Blöcker, A.; Kronberg, E. A.; Grigorenko, E. E.; Roussos, E.; Clark, G.: Dipolarization Fronts in the Jovian Magnetotail: Statistical Survey of Ion Intensity Variations Using Juno Observations. Journal of Geophysical Research (Space Physics) 128, p. e2023JA031312 (2023)
Blöcker, A.; Kronberg, E. A.; Grigorenko, E. E.; Clark, G.; Kozak, L.; Vogt, M. F.; Roussos, E.: Plasmoids in the Jovian Magnetotail: Statistical Survey of Ion Acceleration Using Juno Observations. Journal of Geophysical Research (Space Physics) 127, p. e30460 (2022)
Kozak, L. V.; Petrenko, B. A.; Grigorenko, E. E.; Kronberg, E. A.: Comparison of Ground-Based and Satellite Geomagnetic Pulsations during Substorms. Kinematics and Physics of Celestial Bodies 38, pp. 1 - 10 (2022)
Kozak, L. V.; Petrenko, B. A.; Lui, A. T. Y.; Kronberg, E. A.; Daly, P. W.: Processes in the Current Disruption Region: From Turbulence to Dispersion Relation. Journal of Geophysical Research: Space Physics 126 (1), e2020JA028404 (2021)
Kronberg, E. A.; Gorman, J.; Nykyri, K.; Smirnov, G.; Gjerloev, J. W.; Grigorenko, E. E.; Kozak, L. V.; Ma, X.; Trattner, K. J.; Friel, M.: Kelvin-Helmholtz Instability Associated With Reconnection and Ultra Low Frequency Waves at the Ground: A Case Study. Frontiers in Physics 9, 738988 (2021)
Kozak, L. V.; Petrenko, B. A.; Kronberg, E. A.; Grigorenko, E. E.; Kozak, P. M.; Reka, K. D.: Variations in the Plasma Parameters of the Earth’s Magnetotail during Substorm Initiation. Kinematics and Physics of Celestial Bodies 36 (2), pp. 94 - 102 (2020)
Li, K.; Förster, M.; Rong, Z.; Haaland, S.; Kronberg, E. A.; Cui, J.; Chai, L.; Wei, Y.: The Polar Wind Modulated by the Spatial Inhomogeneity of the Strength of the Earth's Magnetic Field. Journal of Geophysical Research: Space Physics 125 (4), e2020JA027802 (2020)
Li, S.Y.; Luo, H.; Kronberg, E. A.; Ferradas, C.P.; Du, A.M.; Ge, Y.S.; Zhang, Y.; Chen, G.X.; Deng, H.: Stationary "nose-like" ion spectral structures in the inner magnetosphere: Observations by Van Allen probes and simulations. Journal of Atmospheric and Solar-Terrestrial Physics 211, 105390 (2020)
Malykhin, A. Y.; Grigorenko, E. E.; Kronberg, E. A.; Daly, P. W.: Variations in Ion-Component Pressure during Dipolarization in the Near-Earth Magnetotail Plasma Sheet. Geomagnetism and Aeronomy 60 (1), pp. 20 - 27 (2020)
Smirnov, A. G.; Berrendorf, M.; Shprits, Y. Y.; Kronberg, E. A.; Allison, H. J.; Aseev, N. A.; Zhelavskaya, I. S.; Morley, S. K.; Reeves, G. D.; Carver, M. R.et al.; Effenberger, F.: Medium Energy Electron Flux in Earth's Outer Radiation Belt (MERLIN): A Machine Learning Model. Space Weather 18 (11), e2020SW002532 (2020)
Smirnov, A. G.; Kronberg, E. A.; Daly, P. W.; Aseev, N. A.; Shprits, Y. Y.; Kellerman, A. C.: Adiabatic Invariants Calculations for Cluster Mission: A Long‐Term Product for Radiation Belts Studies. Journal of Geophysical Research: Space Physics 125 (2), e2019JA027576 (2020)
Kronberg, E. A.; Grigorenko, E. E.; Malykhin, A.; Kozak, L.; Petrenko, B.; Vogt, M. F.; Roussos, E.; Kollmann, P.; Jackman, C. M.; Kasahara, S.et al.; Malova, K. V.; Tao, C.; Radioti, A.; Masters, A.: Acceleration of Ions in Jovian Plasmoids: Does Turbulence Play a Role? Journal of Geophysical Research: Space Physics 124 (7), pp. 5056 - 5069 (2019)
Malykhin, A. Y.; Grigorenko, E. E.; Kronberg, E. A.; Daly, P. W.; Kozak, L. V.: Acceleration of protons and heavy ions to suprathermal energies during dipolarizations in the near-Earth magnetotail. Annales Geophysicae 37 (4), pp. 549 - 559 (2019)
Parkhomenko, E. I.; Malova, H. V.; Grigorenko, E. E.; Popov, V. Y.; Petrukovich, A. A.; Delcourt, D. C.; Kronberg, E. A.; Daly, P. W.; Zelenyi, L. M.: Acceleration of plasma in current sheet during substorm dipolarizations in the Earth's magnetotail: Comparison of different mechanisms. Physics of Plasmas 26 (4), 042901 (2019)
Smirnov, A. G.; Kronberg, E. A.; Latallerie, F.; Daly, P. W.; Aseev, N.; Shprits, Y. Y.; Kellerman, A.; Kasahara, S.; Turner, D.; Taylor, M. G. G. T.: Electron Intensity Measurements by the Cluster/RAPID/IES Instrument in Earth's Radiation Belts and Ring Current. Space Weather 17 (4), pp. 553 - 566 (2019)
Vogt, M. F.; Gyalay, S.; Kronberg, E. A.; Bunce, E. J.; Kurth, W. S.; Zieger, B.; Tao, C.: Solar Wind Interaction With Jupiter's Magnetosphere: A Statistical Study of Galileo In Situ Data and Modeled Upstream Solar Wind Conditions. Journal of Geophysical Research: Space Physics 124 (12), pp. 10170 - 10199 (2019)
Cheremnykh, O.; Cheremnykh, S.; Kozak, L.; Kronberg, E. A.: Magnetohydrodynamic waves and the Kelvin-Helmholtz instability at the boundary of plasma mediums. Physics of Plasmas 25 (10), 102119 (2018)
Grigorenko, E. E.; Dubyagin, S.; Malykhin, A. Y.; Khotyaintsev, Y. V.; Kronberg, E. A.; Lavraud, B.; Ganushakina, N. Y.: Intense Current Structures Observed at Electron Kinetic Scales in the Near-Earth Magnetotail During Dipolarization and Substorm Current Wedge Formation. Geophysical Research Letters 45 (2), pp. 602 - 611 (2018)
Kozak, L.; Petrenko, B.; Kronberg, E. A.; Grigorenko, E.; Lui, E.; Cheremnykh, S.: Spectra of Turbulence during the Dipolarization of the Magnetic Field. Kinematics and Physics of Celestial Bodies 34 (5), pp. 258 - 269 (2018)
Kozak, L. V.; Petrenko, B. A.; Lui, A. T. Y.; Kronberg, E. A.; Grigorenko, E. E.; Prokhorenkov, A. S.: Turbulent processes in the Earth's magnetotail: spectral and statistical research. Annales Geophysicae 36, pp. 1303 - 1318 (2018)
The research group “Solar Lower Atmosphere and Magnetism” (SLAM) studies the conditions and dynamic processes in the atmospheric layer between the solar surface (photosphere) and the overlying chromosphere, an approximately 2000 km thick gas layer.
The main research fields of the department "Sun and Heliosphere" are covered by the research groups "Solar and Stellar Coronae", "Solar Lower Atmosphere and Magnetism", "Solar and Stellar Magnetohydrodynamics" and "Solar Variability and Climate".
How does our star heat its outer atmosphere, the solar corona, to unimaginable temperatures of up to 10 million degrees Celsius? With unprecedented observational data from ESA's Solar Orbiter spacecraft and powerful computer simulations, ERC starting grant awardee Pradeep Chitta intends to bring new momentum to the search for the coronal heating mechanism.