Structure of the current sheets in the near-Mars magnetotail. Maven observations
- Authors: Grigorenko E.E.1, Shuvalov S.D.1, Malova H.V.1,2, Popov V.Y.1,3,4, Ermakov V.N.1, Dubinin E.5, Zelenyi L.M.1
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Affiliations:
- Space Research Institute of Russian Academy of Science
- Scobeltsyn Nuclear Physics Institute of Lomonosov Moscow State University
- Physics Department of Lomonosov Moscow State University
- Higher School of Economics
- Max Planck Institute for Solar System Research
- Issue: Vol 51, No 5 (2017)
- Pages: 347-361
- Section: Article
- URL: https://journal-vniispk.ru/0038-0946/article/view/170791
- DOI: https://doi.org/10.1134/S0038094617050033
- ID: 170791
Cite item
Abstract
During the last 15 years, the Current Sheets (CSs) have been intensively studied in the tail of the terrestrial magnetosphere, where protons are the dominated ion component. On the contrary, in the Martian magnetotail heavy ions (O+ and+0) usually dominate while the abundance of protons can be negligible. Hence it is interesting to study the spatial structure and plasma characteristics of such “oxygen” CSs. MAVEN spacecraft (s/c) currently operating on the Martian orbit with a unique set of scientific instruments allows observation of the magnetic field and three-dimensional distribution functions of various ion components and electrons with a high time resolution. In this paper, we analyse nine intervals of the CSs observed by MAVEN in the near-Mars tail at the distances from the planet ~1.5–1RM, where RM is the radius of Mars. We analyse the spatial structure of the CSs and estimate their thickness for different magnetic configurations and relative abundance of the heavy and light ions in the sheets. It is shown that, similarly to the CSs in the Earth’s magnetotail, the thickness and complexity of the spatial structure of the Maritan CSs (i.e. the presence of embedded and / or peripheral current structures) depend on the magnetic configuration of the sheets, which, in turn, affects the fraction of the quasi-adiabatic particles in the CSs.
About the authors
E. E. Grigorenko
Space Research Institute of Russian Academy of Science
Author for correspondence.
Email: elenagrigorenko2003@yandex.ru
Russian Federation, Moscow
S. D. Shuvalov
Space Research Institute of Russian Academy of Science
Email: elenagrigorenko2003@yandex.ru
Russian Federation, Moscow
H. V. Malova
Space Research Institute of Russian Academy of Science; Scobeltsyn Nuclear Physics Institute of Lomonosov Moscow State University
Email: elenagrigorenko2003@yandex.ru
Russian Federation, Moscow; Moscow
V. Yu. Popov
Space Research Institute of Russian Academy of Science; Physics Department of Lomonosov Moscow State University; Higher School of Economics
Email: elenagrigorenko2003@yandex.ru
Russian Federation, Moscow; Moscow; Moscow
V. N. Ermakov
Space Research Institute of Russian Academy of Science
Email: elenagrigorenko2003@yandex.ru
Russian Federation, Moscow
E. Dubinin
Max Planck Institute for Solar System Research
Email: elenagrigorenko2003@yandex.ru
Germany, Göttingen
L. M. Zelenyi
Space Research Institute of Russian Academy of Science
Email: elenagrigorenko2003@yandex.ru
Russian Federation, Moscow
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