- Swarm
- Science
- Publications
- Peer-reviewed
Peer-reviewed
The following is a list of publications released featuring the Swarm mission.
2025
- Zuo B, Hu X, Wang L, Cai Y, Kass MA (2025), “Three-dimensional unstructured magnetization vector inversion and modeling of planetary equivalent toroidal currents for Earth’s magnetic field analysis”, Journal of Geophysical Research: Solid Earth, 130, e2024JB029224,
DOI: 10.1029/2024JB029224
- Prol FS, Pignalberi A, Smirnov A, et al. (2025), “Ionospheric tomography for SWARM satellite orbit determination using single-frequency GNSS data”, GPS Solutions, 29, 26,
DOI: 10.1007/s10291-024-01779-4
- Jiang C, Wei L, Yokoyama T, Tian R, Liu T, G Yang (2025), "Observations of daytime topside ionospheric irregularities in the afternoon equatorial ionosphere", Advances in Space Research, 75, 908-917,
DOI: 10.1016/j.asr.2024.09.017
- Alimoradi H, Rahimi H, Moaakhar M (2025), "Investigation of changes in the cumulative number of magnetic anomalies before and after earthquakes using satellite data", Advances in Space Research, 75, 895-907,
DOI: 10.1016/j.asr.2024.09.012
2024
- Wang H and Lühr H (2024), “IMF By effects on the strength and latitude of polar electrojets: CHAMP and Swarm joint observations”, Journal of Geophysical Research: Space Physics, 129, e2023JA032049,
DOI: 10.1029/2023JA032049 - Xia H, Wang H, Zhang K, Zhong, Y, Qian C, Wang C, Sun Y (2024), “Responses of ionospheric radial currents to subauroral polarization streams during quiet periods”, Journal of Geophysical Research: Space Physics, 129, e2023JA031666,
DOI: 10.1029/2023JA031666 - Yang X, Weng L, Lei J, Zhu X, Ruan H, Ren D, et al. (2024), “Evaluation of the exospheric temperature modeling from different empirical orthogonal functions”, Space Weather, 22, e2023SW003549, ,
DOI: 10.1029/2023SW003549 - Mishin EV and Streltsov AV (2024), “Toward the unified theory of SAID-linked subauroral arcs”, Journal of Geophysical Research: Space Physics, 129, e2023JA032196,
DOI: 10.1029/2023JA032196
- Emmela S, Ratnam DV, Leong TE (2024), "Regional ionospheric TEC modeling during geomagnetic storm in August 2021- data fusion using multi-instrument observations", Advances in Space Research, 73, 3818-3832,
DOI: 10.1016/j.asr.2023.06.054
- Aa E, Zhang S-R, Zou S, Wang W, Wang Z, Cai X, et al. (2024), “Significant midlatitude bubble-like ionospheric super-depletion structure (BLISS) and dynamic variation of storm-enhanced density plume during the 23 April 2023 geomagnetic storm”, Space Weather, 22, e2023SW003704, DOI: DOI:10.1029/2023SW003704
- Pignalberi A, Giannattasio F, Truhlik V, Coco I, Pezzopane M, Alberti T (2024), “Investigating the main features of the correlation between electron density and temperature in the topside ionosphere through Swarm satellites data”, Journal of Geophysical Research: Space Physics, 129, e2023JA032201,
DOI: 10.1029/2023JA032201
- Burchill JK and Lomidze L (2024), “Calibration of Swarm ion density, drift, and effective mass measurements”, Earth and Space Science, 11, e2023EA003463,
DOI: 10.1029/2023EA003463
- Tuminello RM, Stephan AW, England SL (2024), “Retrieval of thermospheric O and N2 densities from ICON EUV”, Journal of Geophysical Research: Space Physics, 129, e2023JA032100,
DOI: 10.1029/2023JA032100
- Wan X, Zhong J, Hao Y, Cao Y, Cui J, Xiong C, et al. (2024), “An automatic method for detection and naive classification of the Martian ionospheric irregularities”, Journal of Geophysical Research: Space Physics, 129, e2023JA032228,
DOI: 10.1029/2023JA032228
- Petrov VG and Bondar TN (2024), “Construction of a Spatiotemporal Model of the Main Geomagnetic Field from Satellite Data for the 2015–2020 Epoch“, Geomagnetism and Aeronomy, 64, 112-119,
DOI: 10.1134/S0016793223600923
- Wang H, Wang CZ, Zhong YF (2024), “Effect of interplanetary magnetic field Bx on the polar electrojets as observed by CHAMP and Swarm satellites”, Earth and Planetary Physics, 8, 382-390,
DOI: 10.26464/epp2024018
- Wang H, Sun Y, Lühr H (2024), “Interplanetary magnetic field By effects on the strength and latitude of field-aligned currents in different magnetic local time sectors“, Journal of Geophysical Research: Space Physics, 129, e2023JA032188,
DOI: 10.1029/2023JA032188
- Yang Y, Liu L, Li W, Chen Y, Le H, Zhang R, Zhao X (2024), “Localized plasma density peak at middle latitudes during the April 2023 geomagnetic storm“, Journal of Geophysical Research: Space Physics, 129, e2023JA032165,
DOI: 10.1029/2023JA032165
- Acciarini G, Brown E, Berger T, Guhathakurta M, Parr J, Bridges C, Baydin AG (2024), “Improving thermospheric density predictions in low-Earth orbit with machine learning“, Space Weather, 22, e2023SW003652,
DOI: 10.1029/2023SW003652
- Seba EB Lapenta G (2024), ”Modeling equatorial to mid-latitudinal global night time ionospheric plasma irregularities using machine learning“, Space Weather, 22, e2023SW003754,
DOI: 10.1029/2023SW003754
- Buschmann LM, Clausen LBN, Spicher A, Ivarsen MF, Miloch WJ (2024), “Statistical studies of plasma structuring in the auroral ionosphere by the Swarm satellites”, Journal of Geophysical Research: Space Physics, 129, e2023JA032097,
DOI: 10.1029/2023JA032097
- Decotte M, Laundal KM, Hatch SM, Reistad JP (2024), “Occurrence probability of magnetic field disturbances measured with Swarm: Mapping the dynamic magnetosphere-ionosphere coupling”, Journal of Geophysical Research: Space Physics, 129, e2023JA032191,
DOI: 10.1029/2023JA032191
- Billett DD, Sartipzadeh K, Ivarsen MF, Iorfida E, Doornbos E, Kalafatoglu Eyiguler EC, et al. (2024), “The 2022 Starlink geomagnetic storms: Global thermospheric response to a high-latitude ionospheric driver”, Space Weather, 22, e2023SW003748,
DOI: 10.1029/2023SW003748
- Rajana SSK, Panda SK, Jade S, et al. (2024), “Impact of two severe geomagnetic storms on the ionosphere over Indian longitude sector during March-April 2023“, Astrophysics and Space Science, 369, 3,
DOI: 10.1007/s10509-024-04268-9
- Zhang H, Cai HT, Wan X, Hu K, Xiong C, Gao SZ, Yang LB (2024), “The altitudinal dependences of the inter-hemispheric asymmetry in the mid-latitude ionospheric post-midnight enhancement during equinox“, Journal of Geophysical Research: Space Physics, 129, e2023JA032260,
DOI: 10.1029/2023JA032260
- Li S, Ren Z, Yu T, Chen G, Li G, Zhao B, et al. (2024), “The daytime variations of thermospheric temperature and neutral density over Beijing during minor geomagnetic storm on 3–4 February 2022”, Space Weather, 22, e2023SW003677,
DOI: 10.1029/2023SW003677
- Spogli L, Jin Y, Urbář J, Wood AG, Donegan-Lawley EE, Clausen LBN, at al. (2024), "Statistical models of the variability of plasma in the topside ionosphere: 2. Performance assessment", J. Space Weather Space Clim., 14, 4,
DOI: 10.1051/swsc/2024003
- Aol S, Habyarimana V, Mungufeni P, Buchert SC, Habarulema JB (2024), "Ground and Space-based response of the ionosphere during the geomagnetic storm of 02–06 November 2021 over the low-latitudes across different longitudes", Advances in Space Research, 73, 3014-3032,
DOI: 10.1016/j.asr.2023.12.032
- Rather MR, Bhat AH, Ramkumar TK, Malik MA (2024), "Unique observations and interactions over the low-mid latitude transition region: Simultaneous study of plasma blobs, MSTIDs and plasma irregularities", Advances in Space Research, 73, 3578-3594,
DOI: 10.1016/j.asr.2023.09.038
- Grayver A (2024), "Unravelling the Electrical Conductivity of Earth and Planets", Surveys in Geophysics, 45, 187–238,
DOI: 10.1007/s10712-023-09813-9
- Otzen M, Finlay CC, Kloss C (2024), "Co-estimation of core and lithospheric magnetic fields by a maximum entropy method", Geophysical Journal International, 236, 1646-1667,
DOI: 10.1093/gji/ggae008
- Hładczuk NA, van den IJssel J, Kodikara T, Siemes C, Visser P (2024), "GRACE-FO radiation pressure modelling for accurate density and crosswind retrieval", Advances in Space Research, 73, Issue 5, 2355-2373,
DOI: 10.1016/j.asr.2023.12.059
- Zhang K, Wang H, Xia H, Wang W, Liu J, Zhang S, Jin Y (2024), “The Turkey Earthquake Induced Equatorial Ionospheric Current Disturbances on 6 February 2023”, Remote Sensing, 16, 27,
DOI: 10.3390/rs16020272
- Zhang H, Cai HT, Wan X, Hu K, Xiong C, Gao SZ, Yang LB (2024), “The altitudinal dependences of the inter-hemispheric asymmetry in the mid-latitude ionospheric post-midnight enhancement during equinox”, Journal of Geophysical Research: Space Physics, 129, e2023JA032260,
DOI: 10.1029/2023JA032260
- Akhoondzadeh M(2024), "Investigation of the LAIC mechanism of the Haiti earthquake (August 14, 2021) using CSES-01 satellite observations and other earthquake precursors", Advances in Space Research, 73, 672-684,
DOI: 10.1016/j.asr.2023.09.042
- Zou Y, Zhang X-J, Artemyev AV, Shen Y, Angelopoulos V (2024), “The key role of magnetic curvature scattering in energetic electron precipitation during substorms”, Geophysical Research Letters, 51, e2024GL109227,
DOI: 10.1029/2024GL109227.
- Kauristie K, Marghitu O, van de Kamp M, Hoppe T, Honkonen I, Blagau A, Ivan IM, Codrescu M, Ridley A, Tóth G, Ogawa Y, Trenchi L (2024), “Joule Heating rate at high-latitudes by Swarm and ground-based observations compared to MHD simulations”, Journal of Atmospheric and Solar-Terrestrial Physics, 260, 106254,
DOI: 10.1016/j.jastp.2024.106254.
- Shi Y and Moldwin MB (2024), “Non-geophysical interhemispheric asymmetries in large magnetic field residuals between Swarm observations and Earth magnetic field models during moderate to quiet geomagnetic conditions”, Journal of Geophysical Research: Space Physics, 129, e2023JA032092,
DOI: 10.1029/2023JA032092.
- Wood AG, Donegan-Lawley EE, Clausen LBN, Spogli L, Urbář J, Jin Y, at al. (2024), "Statistical models of the variability of plasma in the topside ionosphere: 1. Development and optimisation", J. Space Weather Space Clim., 14, 7,
DOI:10.1051/swsc/2024002.
- Mohandesi A, Knudsen DJ, Skone S, Langley RB, Yau AW (2024), “Power spectral characteristics of in-situ irregularities and topside GPS signal intensity at low latitudes using high-sample-rate Swarm Echo (e-POP) measurements”, Radio Science, 59, e2023RS007885,
DOI: 10.1029/2023RS007885. - Hatch SM, Vanhamäki H, Laundal KM, Reistad JP, Burchill JK, Lomidze L, Knudsen DJ, Madelaire M, Tesfaw H (2024), “Does high-latitude ionospheric electrodynamics exhibit hemispheric mirror symmetry?”, Ann. Geophys., 42, 229–253,
DOI: 10.5194/angeo-42-229-2024.
- Chuchra-Konrad A, Matyjasiak B, Przepiórka-Skup D, et al. (2024), “Main ionospheric trough and field-aligned currents’ responses to the geomagnetic storms in October 2015 and September 2017“, Acta Geophysica, 72, 3773–3790,
DOI: 10.1007/s11600-024-01304-8.
- Siemes C, van den IJssel J, Visser P (2024), “Uncertainty of thermosphere mass density observations derived from accelerometer and GNSS tracking data”, Advances in Space Research, 73, 5043-5063,
DOI: 10.1016/j.asr.2024.02.057.
- Navarro V, del Rio S, del Mar Millán M, Messina A, Ventura-Traveset J (2024), “GSSC Now: ESA Thematic exploitation platform for navigation digital transformation. Enhancing GNSS scientific research”, Advances in Space Research, 74, 2728-2751,
DOI: 10.1016/j.asr.2024.02.016.
- Paul KS, Haralambous H, Oikonomouv C (2024), “Ionospheric response of the March 2023 geomagnetic storm over European latitudes”, Advances in Space Research, 73, 6029-6040,
DOI: 10.1016/j.asr.2024.03.026
- Finley MG, Martinez-Ledesma M, Paterson WR, Argall MR, Miles DM, Dorelli JC, Zesta E (2024), “Generalized time-series analysis for in situ spacecraft observations: Anomaly detection and data prioritization using principal components analysis and unsupervised clustering”, Earth and Space Science, 11, e2024EA003753,
DOI: 10.1029/2024EA003753
- Xia H, Wang H, Zhang K (2024), “Effects of subauroral polarization streams on ionospheric radial currents during the geomagnetic storm on 23 April 2023”, Journal of Geophysical Research: Space Physics, 129, e2024JA032783,
DOI: 10.1029/2024JA032783
- Zhang K, Wang H, Song, H (2024), ”The polarity oscillations of the equatorial electrojet in response to the geomagnetic storm on 1 December 2023”, Journal of Geophysical Research: Space Physics, 129, e2024JA032978,
DOI: 10.1029/2024JA032978
- Hajra R, Tsurutani BT, Lu Q, Horne RB, Lakhina GS, Yang X, et al. (2024), “The April 2023 SYM-H = −233 nT Geomagnetic storm: A classical event”, Journal of Geophysical Research: Space Physics, 129, e2024JA032986,
DOI: 10.1029/2024JA032986.
- Ivarsen MF, St-Maurice J-P, Park J, Klenzing J, Jin Y, Lee W (2024) ”Plasma structure decay rates in the equatorial ionosphere are strongly coupled by turbulence”, Geophysical Research Letters, 51, e2024GL109441,
DOI: 10.1029/2024GL109441
- Xu C, Lühr H, Xiong C, Wang F, Zhou Y (2024), “Coherence of compressional Pc3-4 pulsation driven by upstream waves in topside ionosphere observed by the Swarm constellation”, Journal of Geophysical Research: Space Physics, 129, e2024JA032502,
DOI: 10.1029/2024JA032502
- Wang CZ, Wang H, Zhang KD, Zhong YF, Xia H, Sun Y, et al. (2024), “Spatial distribution and wave property of dual-frequency EMIC waves: Swarm observations”, Journal of Geophysical Research: Space Physics, 129, e2024JA033031,
DOI: 10.1029/2024JA033031
- Sreelakshmi J, Maute A, Richmond AD, Vichare G, Harding BJ, Alken P (2024), “Effect of vertical shear in the zonal wind on equatorial electrojet sidebands: An observational perspective using Swarm and ICON data”, Journal of Geophysical Research: Space Physics, 129, e2024JA032678, DOI: 10.1029/2024JA032678
- Ma L, Yu Y, Ding X, Liu X, An D, Zhou C, et al. (2024), “Mid-latitude auroras and energetic particle precipitation occurred unusually in a moderate magnetic storm on 1 December 2023”, Geophysical Research Letters, 51, e2024GL110764,
DOI: 10.1029/2024GL110764
- Guo X, Zhao B, Yu T, Hao H, Sun W, Wang G, et al. (2024), “East–west difference in the ionospheric response during the recovery phase of May 2024 super geomagnetic storm over the East Asian”, Journal of Geophysical Research: Space Physics, 129, e2024JA033170,
DOI: 10.1029/2024JA033170.
- Das S, Maity SK, Nanda, K, Jana S, et al. (2024), “Study of the response of the upper atmosphere during the annular solar eclipse on October 14, 2023”, Advances in Space Research, 74, 3344-3360, DOI: 10.1016/j.asr.2024.06.021.
- Foroodi Z, Alizadeh MM, Amerian Y, Schuh H (2024), “Early detection of Tonga volcanic-eruption from internal gravity wave effects on ionosphere, using satellite geodetic techniques”, Journal of Atmospheric and Solar-Terrestrial Physics, 262, 106310,
DOI: 10.1016/j.jastp.2024.106310
- Wang H-B, Zhang M-J, Xiong J-N (2024), “The Feature Analysis and Modeling of Upper Atmospheric Midnight Density Maximum”, Chinese Astronomy and Astrophysics, 48, 597-612,
DOI: 10.1016/j.chinastron.2024.09.009
- Balasis G, De Santis A, Papadimitriou C, Boutsi AZ, Cianchini G, Giannakis O, Potirakis SM, Mandea M (2024), “Swarm Investigation of Ultra-Low-Frequency (ULF) Pulsation and Plasma Irregularity Signatures Potentially Associated with Geophysical Activity”, Remote Sensing, 16, 3506,
DOI: 10.3390/rs16183506.
- Rawat M, Anand SP, Fathy A, et al. (2024), “Lithospheric magnetic anomaly map of Indian subcontinent (LAMI-1) from Swarm satellite data”, Journal of Earth System Science, 133, 180,
DOI: 10.1007/s12040-024-02393-1
- Nel AE and Kotzé PB (2024), “A comparative investigation of geomagnetic jerks across the SAA during the period 2000–2020”, Geophysical Journal International, 239, 192-200,
DOI: 10.1093/gji/ggae264
- Li Y, Gong W, Yan C, Zhu K, Zhang M, Zhang Q (2024), “Freshly developed low-latitude postmidnight-to-dawn F-region ionospheric irregularities over China on 13 November 2015”, Earth and Space Science, 11, e2023EA003380,
DOI: 10.1029/2023EA003380
- Jenner M, Coïsson P, Hulot G, Buresova D, Truhlik V, Chauvet L (2024), “Total root electron content: A new metric for the ionosphere below low Earth orbiting satellites”, Geophysical Research Letters, 51, e2024GL110559,
DOI: 10.1029/2024GL110559
- Smirnov A, Shprits Y, Lühr H, Pignalberi A, Xiong C (2024), “Calibration of Swarm plasma densities overestimation using neural networks”, Space Weather, 22, e2024SW003925,
DOI: 10.1029/2024SW003925
- Zhou Y-L, Lühr H, Rauberg J (2024), “Horizontal scales of small- and meso-scale field-aligned current structures at middle and low latitudes”, Journal of Geophysical Research: Space Physics, 129, e2024JA032857,
DOI: 10.1029/2024JA032857
- Ivarsen MF, Gillies MD, Huyghebaert DR, St-Maurice J-P, Lozinsky A, Galeschuk D, et al. (2024), “Turbulence embedded into the ionosphere by electromagnetic waves”, Journal of Geophysical Research: Space Physics, 129, e2023JA032310,
DOI: 10.1029/2023JA032310
- Karan DK, Martinis CR, Daniell RE, Eastes RW, Wang W, McClintock WE, et al. (2024), “GOLD observations of the merging of the Southern Crest of the equatorial ionization anomaly and aurora during the 10 and 11 May 2024 Mother's Day super geomagnetic storm”, Geophysical Research Letters, 51, e2024GL110632,
DOI: 10.1029/2024GL110632
- Du W, Zhong J, Wan X, Hao Y, Xiong C, Wang H, et al. (2024), “Statistical investigation of the storm time plasma density strip-like bulges at lower-mid latitudes”, Journal of Geophysical Research: Space Physics, 129, e2024JA032608,
DOI: 10.1029/2024JA032608
- Darya AM, Shaikh MM, Nykiel G, Ghamry E, Fernini I (2024), “Multi-instrument analysis of L-band amplitude scintillation observed over the Eastern Arabian Peninsula”, Advances in Space Research, 74, 1856-1867,
DOI: 10.1016/j.asr.2024.05.034
- Kis KI, Taylor PT, Puszta S, et al. (2024), “Interpretation of magnetic measurements of the CHAMP and Swarm-A satellites over the Pannonian Basin”, Acta Geodaetica et Geophysica, 59, 331-342, DOI: 10.1007/s40328-024-00445-y
- Aa E, Huba J, Zhang S-R, Coster AJ, Erickson PJ, Goncharenko LP, et al. (2024), “Multi-instrument and SAMI3-TIDAS data assimilation analysis of three-dimensional ionospheric electron density variations during the April 2024 total solar eclipse”, Journal of Geophysical Research: Space Physics, 129, e2024JA032955,
DOI: 10.1029/2024JA032955
- Li W, Liu L, Chen Y, Zhou Y-J, Le H, Zhang R (2024), ”Interplanetary influence on thermospheric mass density: Insights from deep learning analyses”, Space Weather, 22, e2024SW003952,
DOI: 10.1029/2024SW003952
- Marchetti D, Zhu K, Piscini A, Ghamry E, Shen X, et al. (2024). “Changes in the lithosphere, atmosphere, and ionosphere before and during the Mw = 7.7 Jamaica 2020 earthquake”, Remote Sensing of Environment, 307, 114146,
DOI: 10.1016/j.rse.2024.114146
- Özsöz İ, Pamukçu OA, Timoçin E (2024), "Time-dependent magnetic anomaly variations in Turkey and Greece using swarm satellites: A comprehensive precursory multi-track analysis of M≥6 earthquakes from 2017 to 2020", Journal of Atmospheric and Solar-Terrestrial Physics, 258, 106210,
DOI: 10.1016/j.jastp.2024.106210
- Mestici S, Giannattasio F, De Michelis P, Berrilli F, Consolini G (2024), “Scaling Properties of Magnetic Field Fluctuations in the High-Latitude Ionosphere”, Remote Sensing, 16, 1928,
DOI: 10.3390/rs16111928
- Šachl L, Knopp O, Velímský J (2024), “Electrical conductivity of the suboceanic upper mantle constrained by satellite-derived tidal magnetic fields: three-dimensional inversion, validation and interpretation”, Geophysical Journal International, 238, 1254-1268,
DOI: 10.1093/gji/ggae209
- Li X, Fu Y, Zhang K, et al. (2024), “Improving multiple LEO combination for SLR-based geodetic parameters determination using variance component estimation”, Journal of Geodesy, 98, 71,
DOI: 10.1007/s00190-024-01880-z
- Yuan P, Zheng D, Yao Y, Li T, He C, Xiong ZP, et al. (2024), "An Improved Ionospheric Tomography Method Based on Adaptive Estimation of the Plasmaspheric Electron Content", in IEEE Transactions on Geoscience and Remote Sensing, 62, 1-16,
DOI: 10.1109/TGRS.2024.3440328
- Bunescu C (2024), “The structure of field-aligned current systems as inferred from the multiscale minimum variance analysis”, Earth and Space Science, 11, e2024EA003708,
DOI: 10.1029/2024EA003708
- Gallardo-Lacourt B, Nishimura Y, Kepko L, Spanswick EL, Gillies DM, Knudsen DJ, et al. (2024), “Unexpected STEVE observations at high latitude during quiet geomagnetic conditions”, Geophysical Research Letters, 51, e2024GL110568,
DOI: 10.1029/2024GL110568
- Pandey K, Kalafatoglu Eyiguler EC, Gillies RG, Danskin DW, Billett DD, Yau AW, Hussey GC (2024), “Differential delay of ordinary and extraordinary modes of transionospheric radio waves”, Journal of Geophysical Research: Space Physics, 129, e2024JA032798,
DOI: 10.1029/2024JA032798
- Frøystein I, Spicher A, Gustavsson B, Oksavik K, Johnsen MG (2024), “On the identification of the dayside auroral region using incoherent scatter radar”, Journal of Geophysical Research: Space Physics, 129, e2024JA033361,
DOI: 10.1029/2024JA033361
- Nie W, Wang F, Qiao Z, Xu T, Wang Y, Ye M, et al. (2024), “Ionospheric irregularities coinciding with the 2023 Typhoon Saola: A multi-instrument study”, Journal of Geophysical Research: Space Physics, 129, e2024JA033043,
DOI: 10.1029/2024JA033043
- Wang Y and Bai X (2024), “A global thermospheric density prediction framework based on a deep evidential method”, Space Weather, 22, e2024SW004070,
DOI: 10.1029/2024SW004070
- Ranjan AK, Nailwal D, Sunil Krishna MV, Kumar A, Sarkhel S (2024), “Evidence of potential thermospheric overcooling during the May 2024 geomagnetic superstorm”, Journal of Geophysical Research: Space Physics, 129, e2024JA033148,
DOI: 10.1029/2024JA033148
- Xia H, Wang H, Zhang, K (2024), “Extreme responses of the ionospheric radial currents to the main phase of the super geomagnetic storm on 10 May 2024”, Journal of Geophysical Research: Space Physics, 129, e2024JA033126,
DOI: 10.1029/2024JA033126
- Vichare G and Bagiya MS (2024), “Manifestations of strong IMF-by on the equatorial ionospheric electrodynamics during 10 May 2024 geomagnetic storm”, Geophysical Research Letters, 51, e2024GL112569,
DOI: 10.1029/2024GL112569
- Gerzen T, Minkwitz D, Schmidt M, Rudenko S (2024), “Validation of the NeQuick model, Ensemble Kalman filter and SMART+ based estimations of the topside ionosphere and plasmasphere”, Advances in Space Research, 74, 5973-5990,
DOI: 10.1016/j.asr.2024.08.017
- Dimmock AP, Lanabere V, Johlander A, Rosenqvist L, Yordanova E, Buchert S, et al. (2024), “Investigating the trip of a transformer in Sweden during the 24 April 2023 storm”, Space Weather, 22, e2024SW003948,
DOI: 10.1029/2024SW003948
- Jiang Y, Finlay CC, Olsen N, Tøffner-Clausen L, Yan Q, Zhang K (2024), “Macau Scientific Satellite-1 initial magnetic field model”, Geophysical Research Letters, 51, e2024GL112305,
DOI: 10.1029/2024GL112305
- Zhu Q, Lu G, Vines S, Hairston M (2024), “Interhemispheric asymmetry in the high-latitude neutral density variations during the 13–14 March 2022 storm”, Space Weather, 22, e2024SW004084,
DOI: 10.1029/2024SW004084
- Schreiter L, Brack A, Männel B, Schuh H, Arnold D, Jäggi A (2024), “Imaging of the ionosphere and plasmasphere using GNSS slant TEC obtained from LEO satellites”, Radio Science, 59, e2024RS008058,
DOI: 10.1029/2024RS008058
- Malkov MA, Sotnikov VI, Mishin EV (2024), ”Density troughs in the ionosphere sustained by transport barriers”, Journal of Geophysical Research: Space Physics, 129, e2024JA032838,
DOI: 10.1029/2024JA032838
- Aa E, Zhang S-R, Lei J, Huang F, Erickson PJ, Coster AJ, Luo B (2024), “Significant midlatitude plasma density peaks and dual-hemisphere SED during the 10–11 May 2024 super geomagnetic storm”, Journal of Geophysical Research: Space Physics, 129, e2024JA033360,
DOI: 10.1029/2024JA033360
- Sinevich AA, Chernyshov AA, Chugunin DV, Klimenko MV, Panchenko VA, Yakimova GA, et al. (2024), “Multi-instrument approach to study polarization jet/SAID and STEVE”, Journal of Geophysical Research: Space Physics, 129, e2024JA033222,
DOI: 10.1029/2024JA033222
- Wang H, Cheng Q, Lühr H, Zhong Y, Zhang K, Xia H (2024), “Local time and hemispheric asymmetries of field-aligned currents and polar electrojet during May 2024 superstorm periods”, Journal of Geophysical Research: Space Physics, 129, e2024JA033020,
DOI: 10.1029/2024JA033020
- Jiang C, Tian R, Liu T, Yang G, Shen H, Huang W, Zhao Z (2024), “Observations of strong range spread F and nighttime ionospheric enhancement in the mid-latitude region under geomagnetically quiet conditions”, Journal of Geophysical Research: Space Physics, 129, e2024JA033106,
DOI: 10.1029/2024JA033106
- Wang X, Ren T, Wang R, Luo B, Aa E, Cai L, et al. (2024), “Estimates of spherical satellite drag coefficients in the upper thermosphere during different geomagnetic conditions”, Space Weather, 22, e2024SW003974,
DOI: 10.1029/2024SW003974
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2019
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DOI: 10.3390/atmos10070371 - Archer WE, Gallardo-Lacourt B, Perry GW, St.-Maurice J-P, Buchert SC, Donovan EF (2019), "Steve: The optical signature of intense subauroral ion drifts", Geophysical Research Letters, Vol. 46, pp. 6279–6286
DOI: 10.1029/2019GL082687 - Aubert J and Finlay CC (2019), "Geomagnetic jerks and rapid hydromagnetic waves focusing at Earth’s core surface", Nature Geoscience, 12, 393–398
DOI: 10.1038/s41561-019-0355-1 - Blagau A and Vogt J (2019), "Multipoint field-aligned current estimates with Swarm", Journal of Geophysical Research: Space Physics, Vol. 124, pp. 6869-6895
DOI: 10.1029/2018JA026439 - Bouffard J, Floberghagen R, Olsen N (2019), "The Swarm satellite trio studies Earth and its environment", Eos (Earth & Space Science News), Vol. 100
DOI: 10.1029/2019EO123269 - Cherniak I, Zakharenkova I, Sokolovsky S (2019), "Multi-instrumental observation of storm-induced ionospheric plasma bubbles at equatorial and middle latitudes", Journal of Geophysical Research: Space Physics, Vol. 124, pp. 1491-1508
DOI: 10.1029/2018JA026309 - Fenrich FR, Gillies DM, Donovan E, Knudsen D (2019), "Flow velocity and field-aligned current associated with field line resonance: SuperDARN measurements", Journal of Geophysical Research: Space Physics, Vol. 124, pp. 4889-4904
DOI: 10.1029/2018JA026529 - Grayver AV and Olsen N (2019), "The magnetic signatures of the M2, N2, and O1 oceanic tides observed in Swarm and CHAMP satellite magnetic data", Geophysical Research Letters, Vol. 46, pp. 4230-4238
DOI: 10.1029/2019GL082400 - Hammer MD and Finlay CC (2019), "Local averages of the core–mantle boundary magnetic field from satellite observations", Geophysical Journal International, 216, 1901–1918
DOI: 10.1093/gji/ggy515 - Irrgang C, Saynisch J, Thomas M (2019), "Estimating global ocean heat content from tidal magnetic satellite observations", Nature Scientific Reports, Vol. 9, 7893
DOI: 10.1038/s41598-019-44397-8 - Jin Y, Spicher A, Xiong C, Clausen L, Kervalishvili G, Stolle C, Miloch W (2019), "Ionospheric plasma irregularities characterized by the Swarm satellites: statistics at high latitudes", Journal of Geophysical Research: Space Physics, Vol. 124
DOI: 10.1029/2018JA026063 - Kloss C and Finlay CC (2019),"Time-dependent low-latitude core flow and geomagnetic field acceleration pulses", Geophysical Journal International, 217, 140–168
DOI: 10.1093/gji/ggy545 - Koustov AV, Lavoie DB, Kouznetsov AF, Burchill JK, Knudsen DJ, Fiori RAD (2019), "A comparison of cross-track ion drift measured by the Swarm satellites and plasma convection velocity measured by SuperDARN", Journal of Geophysical Research: Space Physics, Vol. 124, pp. 4710-4724
DOI: 10.1029/2018AJ026245 - Laundal KM, Hatch SM, Moretto T (2019), "Magnetic effects of plasma pressure gradients in the upper F region", Geophysical Research Letters, Vol. 46, pp. 2355–2363
DOI: 10.1029/2019GL081980 - Liang J, Shen Y, Knudsen D, Spanswick E, Burchill J, Donovan E (2019), "e-POP and red line optical observations of Alfvénic auroras", Journal of Geophysical Research: Space Physics, Vol. 124, pp. 4672-4696
DOI: 10.1029/2019JA026679 - Lomidze, L, Burchill J, Knudsen DJ, Kouznetsov A, Weimer, DR (2019), "Validity Study of the Swarm Horizontal Cross-track Ion Drift Velocities in the High-latitude Ionosphere", Earth and Space Science, Vol. 6
DOI: 10.1029/2018EA000546 - Lou, Y., Luo, X., Gu, S., Xiong, C., Song, Q., Chen, B., et al. (2019), "Two typical ionospheric irregularities associated with the tropical cyclones Tembin (2012) and Hagibis (2014)", Journal of Geophysical Research: Space Physics, Vol. 124, pp. 6237–6252
DOI: 10.1029/2019JA026861 - Luo X, Xiong C, Gu S, Lou Y, Stolle C, Wan X, et al. (2019), "Geomagnetically conjugate observations of equatorial plasma irregularities from Swarm constellation and ground-based GPS stations", Journal of Geophysical Research: Space Physics, Vol. 124, pp. 3650–3665
DOI: 10.1029/2019JA026515 - Lühr H, Kervalishvili GN, Stolle C, Rauberg J, Michaelis I (2019), "Average characteristics of low-latitude interhemispheric and F region dynamo currents deduced from the swarm satellite constellation", Journal of Geophysical Research: Space Physics, Vol. 124, pp. 10631–10644
DOI: 10.1029/2019JA027419 - Mann IR, Pakhotin IP, Rae IJ, Murphy KR, Ozeke LG, Knudsen DJ, Kale A, Milling DK (2019), "Magneotosphere-Ionosphere Coupling and Ionospheric Dynamics during Storms and Substorms, Role of Alfvén Waves", In: Mandea M, Korte M, Yau A and Petrovsky E (eds), Geomagnetism, Aeronomy and Space Weather, pp. 229–250, Cambridge University Press
DOI: 10.1017/9781108290135.016 - Mao X, Visser PNAM, van den IJssel J (2019), "High-dynamic baseline determination for the Swarm constellation", Aerospace Science and Technology, Vol. 88, pp. 329–339
DOI: 10.1016/j.ast.2019.03.031 - Montenbruck O, Hauschild A, Langley RB, Siemes C (2019), "CASSIOPE orbit and attitude determination using commercial off-the-shelf GPS receivers", AerosGPS Solutions, Vol. 23, 114
DOI: 10.1007/s10291-019-0907-2 - Nishimura Y, Gallardo-Lacourt B, Zou Y, Mishin E, Knudsen DJ, Donovan EF, Angelopoulos V, Raybell R (2019), "Magnetospheric signatures of STEVE: Implications for the magnetospheric energy source and interhemispheric conjugacy", Geophysical Research Letters, Vol. 46, pp. 5637–5644
DOI: 10.1029/2019GL082460 - Olwendo J, Cilliers PJ, Ming O (2019), "Comparison of ground based ionospheric scintillation observations with in situ electron density variations as measured by the Swarm satellites", Radio Science, Vol. 54, pp. 852–866
DOI: 10.1029/2018RS006734 - Rodríguez-Zuluaga J and Stolle C (2019), "Interhemispheric field-aligned currents at the edges of equatorial plasma depletions", Scientific Reports, Vol. 9
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DOI: 10.1029/2019JA026700 - Rogers HF, Beggan DC, Whaler KA (2019), "Investigation of regional variation in core flow models using spherical Slepian functions", Earth, Planets and Space, Vol. 71, 19
DOI: 10.1186/s40623-019-0997-7 - Velímský J, Šachl L, Martinec Z (2019), "The global toroidal magnetic field generated in the Earth's oceans", Earth and Planetary Science Letters, Vol. 509, pp. 47–54, pp. 47–54
DOI: 10.1016/j.epsl.2018.12.026 - Vichare G, Thomas N, Shiokawa K, Bhaskar A, Sinha AK (2019), "Spatial Gradients in Geomagnetic Storm Time Currents observed by Swarm Multi-Spacecraft Mission", Journal of Geophysical Research: Space Physics, Vol. 124
DOI: 10.1029/2018JA025692 - Wang H, He YF, Lühr H, Kistler LM, Saikin AA, Lund EJ, Ma S-Y (2019), "Storm-time EMIC waves observed by Swarm and Van Allen Probe satellites", Journal of Geophysical Research: Space Physics, Vol. 124
DOI: 10.1029/2018JA026299 - Workayehu AB, Vanhamäki H, Aikio AT (2019), "Field-aligned and horizontal currents in the Northern and Southern Hemispheres from the Swarm satellite", Journal of Geophysical Research: Space Physics, Vol. 124, pp. 7231–7246
DOI: 10.1029/2019JA026835 - Xiong C, Lühr H, Sun L, Luo W, Park J, Hong Y (2019), "Long-lasting latitudinal four-peak structure in the nighttime ionosphere observed by the Swarm constellation", Journal of Geophysical Research: Space Physics, Vol. 124, pp. 9335–9347
DOI: 10.1029/2019JA027096 - Xiong C, Lühr H, Yamazaki Y (2019), "An opposite response of the low-latitude ionosphere at Asian and American sectors during storm recovery phases: Drivers from below or above", Journal of Geophysical Research: Space Physics, Vol. 124, pp. 6266–6280
DOI: 10.1029/2019JA026917 - Xiong C, Yin F, Luo X, Jin Y, Wan X (2019), "Plasma patches inside the polar cap and auroral oval: the impact on the spaceborne GPS receiver", J. Space Weather Space Clim., Vol. 9, A25
DOI: 10.1051/swsc/2019028 - Yin F, Lühr H, Park J, Wang L (2019), "Comprehensive analysis of the magnetic signatures of small-scale traveling ionospheric disturbances, as observed by Swarm", Journal of Geophysical Research: Space Physics, Vol. 124, pp. 10794–10815
DOI: 10.1029/2019JA027523 - Zakharenkova I, Cherniak I, Krankowski A (2019), "Features of storm-induced ionospheric irregularities from ground-based and spaceborne GPS observations during the 2015 St. Patrick's Day Storm", Journal of Geophysical Research: Space Physics, Vol. 124, pp. 10728–10748
DOI: 10.1029/2019JA026782 - Zhang K, Li X, Xiong C, Meng X, Li X, Yuan Y, Zhang X (2019), "The influence of geomagnetic storm of September 7-8, 2017 on the Swarm precise orbit determination", Journal of Geophysical Research: Space Physics, Vol. 124, pp. 6971–6984
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2018
- Aikio AT, Vanhamäki H, Workayehu AB, Virtanen II, Kauristie K, Juusola L, Buchert S, Knudsen D (2018), "Swarm satellite and EISCAT radar observations of a plasma flow channel in the auroral oval near magnetic midnight", Journal of Geophysical Research: Space Physics, Vol. 123, 5140–5158
DOI: 10.1029/2018JA025409 - Akhoondzadeh M, De Santis A, Marchetti D, Piscini A, Cianchini G (2018), "Multi precursors analysis associated with the powerful Ecuador (MW=7.8) earthquake of 16 April 2016 using Swarm satellites data in conjunction with other multi-platform satellite and ground data", Advances in Space Research, Vol. 61, pp. 248-263
DOI: 10.1016/j.asr.2017.07.014 - Archer WE and Knudsen DJ (2018), "Distinguishing Subauroral Ion Drifts From Birkeland Current Boundary Flows", Journal of Geophysics Research: Space Physics, Vol. 123, pp. 819–826
DOI: 10.1002/2017JA024577 - Bezděka A, Seberab J, Klokočník J (2018), "Calibration of Swarm accelerometer data by GPS positioning and linear temperature correction", Advances in Space Research, Vol. 62, pp. 317-325
DOI: 10.1016/j.asr.2018.04.041 - Chartier AT, Mitchell CN, Miller ES (2018), "Annual Occurrence Rates of Ionospheric Polar Cap Patches Observed using Swarm", Journal of Geophysics Research: Space Physics, Vol. 123, pp. 2327–2335
DOI: 10.1002/2017JA024811 - Heilig B and Lühr H (2018), "Quantifying the relationship between the plasmapause and the inner boundary of small-scale field-aligned currents, as deduced from Swarm observations", Ann. Geophys., Vol. 36, pp. 595-607
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DOI: 10.1007/s10291-018-0733-y - Kim H, Hwang J, Park J, Bortnik J, Lee J (2018), "Global characteristics of electromagnetic ion cyclotron waves deduced from Swarm satellites", Journal of Geophysics Research: Space Physics, Vol. 123, pp. 1325–1336
DOI: 10.1002/2017JA024888 - Kodikara T, Carter B, Zhang K (2018), "The first comparison between Swarm-C accelerometer-derived thermospheric densities and physical and empirical model estimates", Journal of Geophysics Research: Space Physics
DOI: 10.1029/2017JA025118 - Laundal KM, Finlay CC, Olsen N, Reistad JP (2018), "Solar wind and seasonal influence on ionospheric currents from Swarm and CHAMP measurements", Journal of Geophysics Research: Space Physics
DOI: 10.1029/2018JA025387 - Liu J, Lyons LR, Archer WE, Gallardo-Lacourt B, Nishimura Y, Zou Y, Gabrielse C, Weygand JM (2018), "Flow Shears at the Poleward Boundary of Omega Bands Observed During Conjunctions of Swarm and THEMIS ASI", Geophysical Research Letters, Vol. 45, pp. 1218–1227
DOI: 10.1002/2017GL076485 - Lomidze L, Knudsen DJ, Burchill J, Kouznetsov A, Buchert SC (2018), "Calibration and validation of Swarm plasma densities and electron temperatures using ground-based radars and satellite radio occultation measurements", Radio Science, Vol. 53, pp. 15–36
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DOI: 10.1016/j.actaastro.2018.03.009 - March G, Doornbos EN, Visser PNAM (2018), "High-fidelity geometry models for improving the consistency of CHAMP, GRACE, GOCE and Swarm thermospheric density data sets", Advances in Space Research
DOI: 10.1016/j.asr.2018.07.009 - Marchetti D and Akhoondzadeh M (2018), "Analysis of Swarm satellites data showing seismo-ionospheric anomalies around the time of the strong Mexico (Mw = 8.2) earthquake of 08 September 2017", Advances in Space Research
DOI: 10.1016/j.asr.2018.04.043 - Martinec Z, Velímský J, Haagmans R, Šachl L (2018), "A two-step along-track spectral analysis for estimating the magnetic signals of magnetospheric ring current from Swarm data", Geophysical Journal International, Vol. 212, pp. 1201–1217
DOI: 10.1093/gji/ggx471 - McGranaghan RM, Mannucci AJ, Forsyth C (2018), "A comprehensive analysis of multiscale field-aligned currents: Characteristics, controlling parameters, and relationships", Journal of Geophysics Research: Space Physics, Vol. 122, pp. 11931–11960
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2017
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DOI: 10.1002/2015GL063662 - Lühr H, Park J, Gjerloev JW, Rauberg J, Michaelis I, Merayo JMG, Brauer P (2015), "Field-aligned currents' scale analysis performed with the Swarm constellation", Geophysical Research Letters, Vol. 42(1), pp. 1-8.
DOI: 10.1002/2014GL062453 - Maus S (2015), "Mysterious misalignments between geomagnetic and stellar reference frames seen in CHAMP and Swarm satellite measurements", Geophysical Journal International, Vol. 203, pp. 1873-1876
DOI: 10.1093/gji/ggv409 - Olsen N, Hulot G, Lesur V, Finlay CC, Beggan C, Chulliat A, Sabaka TJ, Floberghagen R, Friis-Christensen E, Haagmans R, Kotsiaros S, Lühr H, Tøffner-Clausen L, Vigneron P (2015), "The Swarm Initial Field Model for the 2014 geomagnetic field", Geophysical Research Letters, Vol. 42(4), pp. 1092-1098.
DOI: 10.1002/2014GL062659 - Park J, Lühr H, Michaelis I, Stolle C, Rauberg J, Buchert S, Gill R, Merayo JMG, Brauer P (2015), "Westward tilt of low-latitude plasma blobs as observed by the Swarm constellation", Journal of Geophysical Research: Space Physics, Vol. 120, pp. 3187-3197
DOI: 10.1002/2014JA020965 - Park J, Lühr H, Stolle C, Malhotra G, Baker JBH, Bucher S, Gille R (2015), "Estimating along-track plasma drift speed from electron density measurements by the three Swarm satellites", Annales Geophysicae, Vol. 33, pp. 829-835
DOI: 10.5194/angeo-33-829-2015 - Park J, Stolle C, Xiong C, Lühr H, Pfaff RF, Buchert S, Martinis CR (2015), "A dayside plasma depletion observed at midlatitudes during quiet geomagnetic conditions", Geophysical Research Letters, Vol. 42(4), pp. 967-974.
DOI: 10.1002/2014GL062655 - Pitout F, Marchaudon A, Blelly P-L, Bai X, Forme F, Buchert SC, Lorentzen DA (2015), "Swarm and ESR observations of the ionospheric response to a field-aligned current system in the high-latitude midnight sector", Geophysical Research Letters, Vol. 42(11), pp. 4270-4279.
DOI: 10.1002/2015GL064231 - Püthe C, Kuvshinov A, Khan A, Olsen N (2015), "A new model of Earth's radial conductivity structure derived from over 10 yr of satellite and observatory magnetic data", Geophysical Journal International, Vol. 203, pp. 1864-1872
DOI: 10.1093/gji/ggv407 - Santis De A, Balasis G, Pavon-Carrasco FJ, Cianchini G, Mandea (2015), "Potential earthquake precursory pattern from space: The 2015 Nepal event as seen by magnetic Swarm satellites", J, Vol. 461, pp. 119-126
DOI: 10.1016/j.epsl.2016.12.037 - Schmitter ED (2015), "Remote sensing and modeling of energetic electron precipitation into the lower ionosphere using VLF/LF radio waves and field aligned current data", Advances in Radio Science, Vol. 13, pp. 233-242
DOI: 10.5194/ars-13-233-2015 - Schnepf NR, Kuvshinov A, Sabaka T (2015), "Can we probe the conductivity of the lithosphere and upper mantle using satellite tidal magnetic signals?", Geophysical Research Letters, Vol. 42(9), pp. 3233-3239.
DOI: 10.1002/2015GL063540 - Spicher A, Cameron T, Grono EM, Yakymenko KN, Buchert SC, Clausen LBN, Knudsen DJ, McWilliams KA, Moen JI (2015), "Observation of polar cap patches and calculation of gradient drift instability growth times: A Swarm case study", Geophysical Research Letters, Vol. 42(2), pp. 201-206.
DOI: 10.1002/2014GL062590 - Tozzi R, Pezzopane M, De Michelis P, Piersanti M (2015), "Applying a curl-B technique to Swarm vector data to estimate nighttime F region current intensities", Geophysical Research Letters, Vol. 42, pp. 6162-6169
DOI: 10.1002/2015GL064841 - Van den Ijssel J, Encarnação J, Doornbos E, Visser P (2015), "Precise science orbits for the Swarm satellite constellation", Advances in Space Research, Vol. 56, pp. 1042-1055
DOI: 10.1016/j.asr.2015.06.002 - Verbanac G, Mandea M, Bandic M, Subasic S (2015), "Magnetic observatories: biases over CHAMP satellite mission", Solid Earth, Vol. 6, pp. 775-781
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DOI: 10.1186/s40623-015-0265-4 - Zakharenkova I, Astafyeva E, Cherniak I (2015), "Early morning irregularities detected with spaceborne GPS measurements in the topside ionosphere: A multisatellite case study", Journal of Geophysical Research: Space Physics, Vol. 120, pp. 8817-8834
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2014
- Alken P, Maus S, Lühr H, Redmon RJ, Rich F, Bowman B, O'Malley SM (2014), "Geomagnetic main field modeling with DMSP", Journal of Geophysical Research: Space Physics, Vol. 119, pp. 4010-4025
DOI: 10.1002/2013JA019754 - Brown LL, Webber J, Williams M, Regan S, Seaman S (2014), "Magnetism of the lower crust: Observations from the Chipman Domain, Athabasca Granulite Terrain, northern Canada", Tectonophysics, Vol. 624-625, pp. 66-74
DOI: 10.1016/j.tecto.2013.12.004 - Fiori RAD, Boteler DH, Koustov AV, Knudsen D, Burchill JK (2014), "Investigation of localized 2D convection mapping based on artificially generated Swarm ion drift data", Journal of Atmospheric and Solar-Terrestrial Physics, Vol. 114, pp. 30-41
DOI: 10.1016/j.jastp.2014.04.004 - Kis K, Taylor PT, Wittmann G (2014), "Determination of the Earths Magnetic Field Gradients from Satellites Measurements and Their Inversion over the Kursk Magnetic Anomaly", J Aeronaut Aerospace, Vol. 55, pp. 150-162
DOI: 10.4172/2168-9792.1000164 - Püthe C, Kuvshinov A (2014), "Mapping 3-D mantle electrical conductivity from space: a new 3-D inversion schema based on analysis of matrix Q-responses", Geophysical Journal International, Vol. 197, pp. 768-784
DOI: 10.1093/gji/ggu027 - Sabaka TJ, Olsen N, Tyler RH, Kuvshinov A (2014), "CM5, a pre-Swarm comprehensive geomagnetic field model derived from over 12yr of CHAMP, Ørsted, SAC-C and observatory data ", Geophysical Journal International, Vol. 200, pp. 1596-1626
DOI: 10.1093/gji/ggu493 - Saeed-Ur-Rehmana, Marchand R (2014), "Plasma-satellite interaction driven magnetic field perturbations", Physics of Plasmas, Vol. 21
DOI: 10.1063/1.4894678 - Sebera J, Šprlák M, Novák P, Bezdek A, Valko M (2014), "Iterative Spherical Downward Continuation Applied to Magnetic and Gravitational Data from Satellite", Surveys in Geophysics, Vol. 35, pp. 941-958
DOI: 10.1007/s10712-014-9285-z - Taylor PT, Kis KI, Wittmann G (2014), "Satellite-altitude horizontal magnetic gradient anomalies used to define the Kursk Magnetic Anomaly", Journal of Applied Geophysics, Vol. 109, pp. 133-139
DOI: 10.1016/j.jappgeo.2014.07.018 - Wang Z-T, Chao N-F (2014), "Time-variable gravity signal in Greenland revealed by SWARM high-low Satellite-to-Satellite Tracking", Chinese Journal of Geophysics (Acta Geophysica Sinica), Vol. 57, pp. 3117-3128
DOI: 10.6038/cjg20141003
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DOI: 10.1002/2013JA019204.
2013
- Alken P, Maus S, Vigneron P, Sirol O, Hulot G (2013), "Swarm SCARF equatorial electric field inversion chain ", Earth, Planets and Space, Vol. 65, pp. 1309-1317
DOI: 10.5047/eps.2013.09.008 - Balasis G, Daglis IA, Georgiou M, apadimitriou C, Haagmans R (2013), "Magnetospheric ULF wave studies in the frame of Swarm mission: a time-frequency analysis tool for automated detection of pulsations in magnetic and electric field observations", Earth, Planets and Space, Vol. 65, pp. 1385-1398
DOI: 10.5047/eps.2013.10.003 - Balasis G, Daglis IA, Zesta E, Papadimitriou C, Georgiou M, Haagmans R, Tsinganos K (2013), "ULF wave activity during the 2003 Halloween superstorm: multipoint observations from CHAMP, Cluster and Geoteil missions", Annales, Geophysicae, Vol. 30, pp. 1751-1768
DOI: 10.5194/angeo-30-1751-2012 - Baur O (2013), "Greenland mass variation from time-variable gravity in the absence of GRACE", Geophysical Research Letters, Vol. 40, pp. 4289–4293
DOI: 10.1002/grl.50881 - Beggan CD, Macmillan S, Hamilton B, Thomson AWP (2013), "Independent validation of Swarm Level 2 magnetic field products and 'Quick Look' for Level 1b data", Earth, Planets and Space, Vol. 65, pp. 1345-1353
DOI: 10.5047/eps.2013.08.004 - Chulliat A, Vigneron P, Thébault E, Sirol O, Hulot G (2013), "Swarm SCARF Dedicated Ionospheric Field Inversion chain", Earth, Planets and Space, Vol. 65, pp. 1271-1283
DOI: 10.5047/eps.2013.08.006 - Civet F, Tarits P (2013), "Analysis of magnetic satellite data to infer the mantle electrical conductivity of telluric planets in the solar system", Planetary and Space Science, Vol. 84, pp. 102-111
DOI: 10.1016/j.pss.2013.05.004 - Clarke E, Baillie O, Reay SJ, Turbitt CW (2013), "A method for the near real-time production of quasi-definitive magnetic observatory data", Earth, Planets and Space, Vol. 65, pp. 1363-1374
DOI: 10.5047/eps.2013.10.001 - Fiori RAD, Boteler DH, Knudsen D, Burchill J, Koustov AV, Cousins EDP, Blais C (2013), "Potential impact of Swarm electric field data on global 2D convection mapping in combination with SuperDARN radar data", Journal of Atmospheric and Solar-Terrestrial Physics, Vol. 93, pp. 87-99
DOI: 10.1016/j.jastp.2012.11.013 - Hamilton B (2013), "Rapid modelling of the large-scale magnetospheric field from Swarm satellite data", Earth, Planets and Space, Vol. 65, pp. 1295-1308
DOI: 10.5047/eps.2013.09.003 - Kunagu P, Balasis G, Lesur V, Chandrasekhar E, Papadimitrou C (2013), "Wavelet characterization of external magnetic sources as observed by CHAMP satellite: evidence for unmodelled signals in geomagnetic field models", Geophysical Journal International, Vol. 192, pp. 946-950
DOI: 10.1093/gji/ggs093 - Macmillan S, Olsen N (2013), "Observatory data and the Swarm mission", Earth, Planets and Space, Vol. 65, pp. 1355-1362
DOI: 10.5047/eps.2013.07.011 - Olsen N, Friis-Christensen E, Floberghagen R, Alken P, Beggan CD, Chulliat A, Doornbos E, Da Encarnação JT, Hamilton B, Hulot G, Van Den Ijssel J, Kuvshinov A, Lesur V, Lühr H, Macmillan S, Maus S, Noja M, Olsen PEH, Park J, Plank G, Püthe C, Rauberg J, Ritter P, Rother M, Sabaka TJ, Schachtschneider R, Sirol O, Stolle C, Thébault E, Thomson AWP, Tøffner-Clausen L, Velímský J, Vigneron P, Visser PN (2013), "The Swarm Satellite Constellation Application and Research Facility (SCARF) and Swarm data products", Earth, Planets and Space, Vol. 65, pp. 1189-1200
DOI: 10.5047/eps.2013.07.001 - Park J, Noja M, Stolle C, Lühr H (2013), "The Ionospheric Bubble Index deduced from magnetic field and plasma observations onboard Swarm", Earth, Planets and Space, Vol. 65, pp. 1333-1344
DOI: 10.5047/eps.2013.08.005 - Püthe C, Kuvshinov A (2013), "Determination of the 1-D distribution of electrical conductivity in Earth's mantle from Swarm satellite data", Earth, Planets and Space, Vol. 65, pp. 1233-1237
DOI: 10.5047/eps.2013.07.007 - Püthe C, Kuvshinov A (2013), "Datermination of the 3-D distribution of electrical conductivity in Earth's mantle from Swarm satellite data: Frequency domain approach based on inversion of induced coefficients", Earth, Planets and Space, Vol. 65, pp. 1247-1256
DOI: 10.5047/eps.2013.09.004 - Ritter P, Lühr H, Rauberg J (2013), "Determining field-aligned currents with the Swarm constellation mission", Earth, Planets and Space, Vol. 65, pp. 1285-1294
DOI: 10.5047/eps.2013.09.006 - Rother, M, Lesur V, Schachtschneider R (2013), "An algorithm for deriving core magnetic field models from the Swarm data set", Earth, Planets and Space, Vol. 65, pp. 1223-1231
DOI: 10.5047/eps.2013.07.005 - Sabaka TJ, Tøffner-Clausen L, Olsen N (2013), "Use of the Comprehensive Inversion method for Swarm satellite data analysis", Earth, Planets and Space, Vol. 65, pp. 1201-1222
DOI: 10.5047/eps.2013.09.007 - Stolle C, Floberghagen R, Lühr H, Maus S, Knudsen DJ, Alken P, Doornbos E, Hamilton B, Thomson AWP, Visser PN (2013), "Space Weather opportunities from the Swarm mission including near real time applications", Earth, Planets and Space, Vol. 65, pp. 1375-1383
DOI:10.5047/eps.2013.10.002 - Taylor PT, Kis KI, Wittmann G (2013), "Interpretation of CHAMP magnetic anomaly data over the Pannonian Basin region using lower altitude horizontal gradient data", Acta Geodaetica et Geophysica, Vol. 48, pp. 275-280
DOI: 10.1007/s40328-013-0026-4 - Thébault E, Vigneron P, Maus S, Chulliat A, Sirol O, Hulot G (2013), "Swarm SCARF Dedicated Lithospheric Field Inversion chain", Earth, Planets and Space, Vol. 65, pp. 1257-1270
DOI: 10.5047/eps.2013.07.008 - Velímský J (2013), "Determination of three-dimensional distribution of electrical conductivity in the Earth's mantle from Swarm satellite data: Time-domain approach", Earth, Planets and Space, Vol. 65, pp. 1239-1246
DOI:10.5047/eps.2013.08.001 - Visser P, Doornbos E, Van Den IJssel J, Da Encarnação JT (2013), "Thermospheric density and wind retrieval from Swarm observations", Earth, Planets and Space, Vol. 65, pp. 1319-1331
DOI: 10.5047/eps.2013.08.003 - Vogt J, Sorbalo E, He M, Blagau A (2013), "Gradient estimation using configurations of two or three spacecraft", Annales Geophysicae, Vol. 31, pp. 1913-1927
DOI: 10.5194/angeo-31-1913-2013
2012
- Olsen N, Stolle C (2012), "Satellite Geomagnetism", Annual Review of Earth and Planetary Sciences, Vol. 40, pp. 441-465
DOI: 10.1146/annurev-earth-042711-105540 - Wang X, Gerlach C, Rummel R (2012), "Time-variable gravity field from satellite constellations using the energy integral", Geophysical Journal International, Vol. 190, pp. 1507-1525
DOI: 10.1111/j.1365-246X.2012.05578.x
2011
- Alken P, Maus S, Richmond AD, Maute A (2011), "The ionospheric gravity and diamagnetic current systems", Journal of Geophysical Research: Space Physics, Vol. 116, pp. 441-465
DOI: 10.1029/2011JA017126 - Maus S, Manoj C (2011), "Geomagnetic field models for exploration and directional drilling", SEG Technical Program Expanded Abstracts, Vol. 30, pp. 2344-2347
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2010
- Bruinsma SL, Forbes JM (2010), "Large-scale traveling atmospheric disturbances (LSTADs) in the thermosphere inferred from CHAMP, GRACE, and SETA accelerometer data", Journal of Atmospheric and Solar-Terrestrial Physics, Vol. 72, pp. 1057-1066
DOI: 10.1016/j.jastp.2010.06.010 - Everett ME (2010), "Spatiotemporal sampling of Sq+-induced geomagnetic responses at LEO satellite altitude for a radially conductive Earth", Geophysical Journal International, Vol. 183, pp. 1185-1198
DOI: 10.1111/j.1365-246X.2010.04788.x - Olsen N, Hulot G, Sabaka TJ (2010), "Measuring the Earth's Magnetic Field from Space: Concepts of Past, Present and Future Missions", Space Science Reviews, Vol. 155, pp. 1-4
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2009
- Wettergren J, Bonnedal M, Ingvarson P, Wästberg B. (2009), "Antenna for precise orbit determination", Acta Astronautica, Vol. 65, pp. 1765 - 1771
DOI: 10.1016/j.actaastro.2009.05.004
2008
- Friis-Christensen E, Lühr H, Knudsen D, Haagmans R (2008), "Swarm – An Earth Observation Mission investigating Geospace", Advances in Space Research, Vol. 41, pp. 210–216
DOI: 10.1016/j.asr.2006.10.008
2006
- Olsen N, Haagmans R (2006), "Preface", Earth, Planets and Space, Vol. 58, p. 349
DOI: 10.1186/BF03351932 - Friis-Christensen E, Lühr H, Hulot G (2006), "Swarm: A constellation to study the Earth's magnetic field", Earth, Planets and Space, Vol. 58, pp. 351-358
DOI: 10.1186/BF03351933 - Olsen N, Haagmans R, Sabaka TJ, Kuvshinov A, Maus S, Purucker ME, Rother M, Lesur V, Mandea M (2006), "The Swarm End-to-End mission simulator study: A demonstration of separating the various contributions to Earth's magnetic field using synthetic data", Earth, Planets and Space, Vol. 58, pp. 359–370
DOI: 10.1186/BF03351934 - Sabaka TJ, Olsen N (2006), "Enhancing comprehensive inversions using the Swarm constellation", Earth, Planets and Space, Vol. 58, pp. 371–395
DOI: 10.1186/BF03351935 - Maus S, Lühr H, Purucker M (2006), "Simulation of the high-degree lithospheric field recovery for the Swarm constellation of satellites", Earth, Planets and Space, Vol. 58, pp. 397–407
DOI: 10.1186/BF03351936 - Lesur V, Macmillan S, Thomson A (2006), "Deriving main field and secular variation models from synthetic Swarm satellite and observatory data", Earth, Planets and Space, Vol. 58, pp. 409–416
DOI: 10.1186/BF03351937 - Kuvshinov A, Sabaka T, Olsen N (2006), "3-D electromagnetic induction studies using the Swarm constellation: Mapping conductivity anomalies in the Earth's mantle", Earth, Planets and Space, Vol. 58, pp. 417–427
DOI: 10.1186/BF03351938 - Manoj C, Kuvshinov A, Maus S, Lühr H (2006), "Ocean circulation generated magnetic signals", Earth, Planets and Space, Vol. 58, pp. 429–437
DOI: 10.1186/BF03351939 - Moretto T, Vennerstrøm S, Olsen N, Rastätter L, Raeder J (2006), "Using global magnetospheric models for simulation and interpretation of Swarm external field measurements", Earth, Planets and Space, Vol. 58, pp. 439–449
DOI: 10.1186/BF03351940 - Vennerstrom S, Moretto T, Rastätter L, Raeder J (2006), "Modeling and analysis of solar wind generated contributions to the near-Earth magnetic field", Earth, Planets and Space, Vol. 58, pp. 451–461
DOI: 10.1186/BF03351941 - Ritter P, Lühr H (2006), "Curl-B technique applied to Swarm constellation for determining field-aligned currents", Earth, Planets and Space, Vol. 58, pp. 463–476
DOI: 10.1186/BF03351942 - Lesur V (2006), "Introducing localized constraints in global geomagnetic field modelling", Earth, Planets and Space, Vol. 58, pp. 477–483
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