Mixing the Solar Wind Proton and Electron Scales. Theory and 2D-PIC Simulations of Firehose Instability

Author:

López R. A.ORCID,Micera A.ORCID,Lazar M.ORCID,Poedts S.ORCID,Lapenta G.ORCID,Zhukov A. N.ORCID,Boella E.ORCID,Shaaban S. M.ORCID

Abstract

Abstract Firehose-like instabilities (FIs) are cited in multiple astrophysical applications. Of particular interest are the kinetic manifestations in weakly collisional or even collisionless plasmas, where these instabilities are expected to contribute to the evolution of macroscopic parameters. Relatively recent studies have initiated a realistic description of FIs, as induced by the interplay of both species, electrons and protons, dominant in the solar wind plasma. This work complements the current knowledge with new insights from linear theory and the first disclosures from 2D-PIC simulations, identifying the fastest growing modes near the instability thresholds and their long-run consequences on the anisotropic distributions. Thus, unlike previous setups, these conditions are favorable to those aperiodic branches that propagate obliquely to the uniform magnetic field, with (maximum) growth rates higher than periodic, quasi-parallel modes. Theoretical predictions are, in general, confirmed by the simulations. The aperiodic electron FI (a-EFI) remains unaffected by the proton anisotropy, and saturates rapidly at low-level fluctuations. Regarding the FI at proton scales, we see a stronger competition between the periodic and aperiodic branches. For the parameters chosen in our analysis, the aperiodic proton FI (a-PFI) is excited before than the periodic proton FI (p-PFI), with the latter reaching a significantly higher fluctuation power. However, both branches are significantly enhanced by the presence of anisotropic electrons. The interplay between EFIs and PFIs also produces a more pronounced proton isotropization.

Funder

ANID ∣ Fondo Nacional de Desarrollo Científico y Tecnológico

KU Leuven

Fonds Wetenschappelijk Onderzoek

European Space Agency

Belgian Federal Science Policy Office

NLHPC

Publisher

American Astronomical Society

Subject

Space and Planetary Science,Astronomy and Astrophysics

Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Direct Observations of Electron Firehose Fluctuations in the Magnetic Reconnection Outflow;Journal of Geophysical Research: Space Physics;2023-04-27

2. Synchrotron Firehose Instability;The Astrophysical Journal;2023-02-01

3. Conditions for Proton Temperature Anisotropy to Drive Instabilities in the Solar Wind;The Astrophysical Journal;2022-12-01

4. Electron-Driven Instabilities in the Solar Wind;Frontiers in Astronomy and Space Sciences;2022-08-03

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