Characterizing the current systems in the Martian ionosphere

Fuente: arXiv
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Main Authors: Gao, Jiawei, Li, Shibang, Mittelholz, Anna, Rong, Zhaojin, Persson, Moa, Shi, Zhen, Lu, Haoyu, Zhang, Chi, Wang, Xiaodong, Dong, Chuanfei, Klinger, Lucy, Cui, Jun, Wei, Yong, Pan, Yongxin
Format: Preprint
Published: 2024
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author Gao, Jiawei
Li, Shibang
Mittelholz, Anna
Rong, Zhaojin
Persson, Moa
Shi, Zhen
Lu, Haoyu
Zhang, Chi
Wang, Xiaodong
Dong, Chuanfei
Klinger, Lucy
Cui, Jun
Wei, Yong
Pan, Yongxin
author_facet Gao, Jiawei
Li, Shibang
Mittelholz, Anna
Rong, Zhaojin
Persson, Moa
Shi, Zhen
Lu, Haoyu
Zhang, Chi
Wang, Xiaodong
Dong, Chuanfei
Klinger, Lucy
Cui, Jun
Wei, Yong
Pan, Yongxin
contents When the solar wind interacts with the ionosphere of an unmagnetized planet, it induces currents that form an induced magnetosphere. These currents and their associated magnetic fields play a pivotal role in controlling the movement of charged particles, which is essential for understanding the escape of planetary ions. Unlike the well-documented magnetospheric current systems, the ionospheric current systems on unmagnetized planets remain less understood, which constrains the quantification of electrodynamic energy transfer from stars to these planets. Here, utilizing eight years of data from the Mars Atmosphere and Volatile EvolutioN (MAVEN) mission, we investigate the global distribution of ionospheric currents on Mars. We have identified two distinct current systems in the ionosphere: one aligns with the solar wind electric field yet exhibits hemispheric asymmetry perpendicular to the electric field direction; the other corresponds to the flow pattern of annually-averaged neutral winds. We propose that these two current systems are driven by the solar wind and atmospheric neutral winds, respectively. Our findings reveal that Martian ionospheric dynamics are influenced by the neutral winds from below and the solar wind from above, highlighting the complex and intriguing nature of current systems on unmagnetized planets.
format Preprint
id arxiv_https___arxiv_org_abs_2408_03075
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Characterizing the current systems in the Martian ionosphere
Gao, Jiawei
Li, Shibang
Mittelholz, Anna
Rong, Zhaojin
Persson, Moa
Shi, Zhen
Lu, Haoyu
Zhang, Chi
Wang, Xiaodong
Dong, Chuanfei
Klinger, Lucy
Cui, Jun
Wei, Yong
Pan, Yongxin
Earth and Planetary Astrophysics
Space Physics
When the solar wind interacts with the ionosphere of an unmagnetized planet, it induces currents that form an induced magnetosphere. These currents and their associated magnetic fields play a pivotal role in controlling the movement of charged particles, which is essential for understanding the escape of planetary ions. Unlike the well-documented magnetospheric current systems, the ionospheric current systems on unmagnetized planets remain less understood, which constrains the quantification of electrodynamic energy transfer from stars to these planets. Here, utilizing eight years of data from the Mars Atmosphere and Volatile EvolutioN (MAVEN) mission, we investigate the global distribution of ionospheric currents on Mars. We have identified two distinct current systems in the ionosphere: one aligns with the solar wind electric field yet exhibits hemispheric asymmetry perpendicular to the electric field direction; the other corresponds to the flow pattern of annually-averaged neutral winds. We propose that these two current systems are driven by the solar wind and atmospheric neutral winds, respectively. Our findings reveal that Martian ionospheric dynamics are influenced by the neutral winds from below and the solar wind from above, highlighting the complex and intriguing nature of current systems on unmagnetized planets.
title Characterizing the current systems in the Martian ionosphere
topic Earth and Planetary Astrophysics
Space Physics
url https://arxiv.org/abs/2408.03075