Solar Control of the Pickup Ion Plume in the Dayside Magnetosheath of Venus

Author:

Xu Qi1ORCID,Xu Xiaojun23ORCID,Zuo Pingbing1ORCID,Futaana Yoshifumi4ORCID,Chang Qing23ORCID,Gu Hao5ORCID

Affiliation:

1. Institute of Space Science and Applied Technology Harbin Institute of Technology Shenzhen China

2. State Key Laboratory of Lunar and Planetary Sciences Macau University of Science and Technology Macau China

3. CNSA Macau Center for Space Exploration and Science Macau China

4. Swedish Institute of Space Physics Kiruna Sweden

5. Planetary Environmental and Astrobiological Research Laboratory (PEARL) School of Atmospheric Sciences Sun Yat‐sen University Zhuhai China

Abstract

AbstractUsing the 8.5‐year Venus Express measurements, we demonstrate the asymmetric plasma distributions in the Venusian magnetosheath. An escaping plume is formed by pickup oxygen ions in the hemisphere where the motional electric field points outward from Venus, while the velocity of solar wind protons is faster in the opposite hemisphere. The pickup O+ escape rate is estimated to be (3.6 ± 1.4) × 1024 s−1 at solar maximum, which is comparable to the ion loss rate through the magnetotail, and (1.3 ± 0.4) × 1024 s−1 at solar minimum. The increase of O+ fluxes with extreme ultraviolet (EUV) intensity is significant upstream of the bow shock, partially attributed to the increase of exospheric neutral oxygen density. However, the solar wind velocity just has a slight effect on the pickup O+ escape rate in the magnetosheath, while the effect of solar wind density is not observed. Our results suggest the pickup O+ escape rate is mainly controlled by EUV radiation.

Funder

National Natural Science Foundation of China

China Postdoctoral Science Foundation

Publisher

American Geophysical Union (AGU)

Subject

General Earth and Planetary Sciences,Geophysics

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