Acceleration of Pick‐Up Ions in the Martian Magnetosheath: A Tianwen‐1 Case Study

Author:

Qiao Fuhao1234ORCID,Li Lei123ORCID,Xie Lianghai123,Li Wenya123ORCID,Kong Linggao156,Tang Binbin123ORCID,Zhang Yiteng123ORCID,Zhang Aibing145ORCID,Xu Qi123,Wang Limin1234,Jin Taifeng7ORCID,Ma Jijie145ORCID,Sun Fuyu1234

Affiliation:

1. National Space Science Center Chinese Academy of Sciences Beijing China

2. State Key Laboratory of Space Weather National Space Science Center Chinese Academy of Sciences Beijing China

3. Key Laboratory of Solar Activity and Space Weather National Space Science Center Chinese Academy of Sciences Beijing China

4. University of Chinese Academy of Sciences Beijing China

5. Beijing Key Laboratory of Space Environment Exploration Beijing China

6. Institute of Science and Technology for Deep Space Exploration Nanjing University Suzhou China

7. Department of Space Physics School of Electronic Information Wuhan University Wuhan China

Abstract

AbstractThis study delves into a Pick‐Up Ion (PUI) event captured by the Mars Ion and Neutral Particle Analyzer aboard Tianwen‐1, revealing a faster acceleration than expected within the Martian magnetosheath. This event suggests the presence of a convection electric field considerably stronger than that typically observed in the solar wind. Through Magnetohydrodynamic simulation, we identified two regions of intensified convection electric fields within the inner magnetosheath, prominently manifested at mid to high solar zenith angles (SZA = 40°–70°) in the X‐Z plane of the Mars Solar Electric field coordinates. Tianwen‐1 observed that the peak of the electric field strength, up to five times of that in the solar wind, is located at the upper edge or within the Magnetic Pileup Boundary. Further study by test particle simulations showed acceleration by the electric field effectively doubles the energy gain of PUIs, in comparison to scenarios absent of this extra acceleration. It is revealed that the presence of such electric field regions within the Martian magnetosheath is a prevailing feature, shaped by the solar wind's interaction with Mars and modulated by the planet's rotating crustal magnetic fields.

Funder

National Natural Science Foundation of China

Chinese Academy of Sciences

Publisher

American Geophysical Union (AGU)

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