Flow directions of low-energy ions in and around the diamagnetic cavity of comet 67P

Author:

Bergman Sofia12ORCID,Stenberg Wieser Gabriella1ORCID,Wieser Martin1,Nilsson Hans1ORCID,Vigren Erik3ORCID,Beth Arnaud2ORCID,Masunaga Kei4,Eriksson Anders3ORCID

Affiliation:

1. Swedish Institute of Space Physics, Box 812, SE-981 28 Kiruna, Sweden

2. Department of Physics, Umeå University, SE-901 87 Umeå, Sweden

3. Swedish Institute of Space Physics, Box 537, SE-751 21 Uppsala, Sweden

4. Institute of Space and Astronautical Science, Japan Aerospace Exploration Agency, Yoshinodai 3-1-1, Chuo-ku, Sagamihara, Kanagawa 252-5210, Japan

Abstract

Abstract The flow direction of low-energy ions around comet 67P/Churyumov–Gerasimenko has previously been difficult to constrain due to the influence of the spacecraft potential. The Ion Composition Analyzer of the Rosetta Plasma Consortium (RPC-ICA) on Rosetta measured the distribution function of positive ions with energies down to just a few eV/q throughout the escort phase of the mission. Unfortunately, the substantial negative spacecraft potential distorted the directional information of the low-energy data. In this work, we present the flow directions of low-energy ions around comet 67P, corrected for the spacecraft potential using Particle-In-Cell simulation results. We focus on the region in and around the diamagnetic cavity, where low-energy ions are especially important for the dynamics. We separate between slightly accelerated ‘burst’ features and a more constant ‘band’ of low-energy ions visible in the data. The ‘bursts’ are flowing radially outwards from the nucleus with an antisunward component while the ‘band’ is predominantly streaming back towards the comet. This provides evidence of counter-streaming ions, which has implications for the overall expansion velocity of the ions. The backstreaming ions are present also at times when the diamagnetic cavity was not detected, indicating that the process accelerating the ions back towards the comet is not connected to the cavity boundary.

Funder

Swedish National Space Agency

European Space Agency

NASA

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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