Dependence of Quasi‐Electrostatic Magnetosonic Wave Generation on Plasma Density and Suprathermal Protons

Author:

Liu Si12ORCID,Wang Wenyao1,Gao Zhonglei12ORCID,Yang Qiwu1ORCID,Xiao Fuliang1ORCID,He Qian1ORCID,Li Tong1ORCID,Zhou Qinghua1ORCID,Yang Chang1ORCID,Zhang Sai1

Affiliation:

1. School of Physics and Electronic Sciences Changsha University of Science and Technology Changsha China

2. Hunan Province Higher Education Key Laboratory of Modeling and Monitoring on the Near‐Earth Electromagnetic Environments Changsha University of Science and Technology Changsha China

Abstract

AbstractMagnetosonic (MS) wave is one of the most common electromagnetic emissions in the magnetosphere, while quasi‐electrostatic magnetosonic (QEMS) waves are seldom observed. Here we present an interesting QEMS event detected by Van Allen Probe A on 9 January 2014, in which the presence of multi‐band QEMS emissions shows evident correlations with relatively low plasma densities (∼10 cm−3) and enhancements of suprathermal (∼10 − 100 eV) proton fluxes. Based on the observed proton distributions, simulations demonstrate very similar profiles to the observed QEMS in the wave spectral characteristics. Parametric studies indicate that the QEMS growth rate can increase by ∼20 times with the plasma density decreasing from 50 to 10 cm−3. Effective growth rates of higher‐band QEMS occur when the suprathermal proton population is sufficiently large. This study reveals that low densities and large suprathermal proton populations are favorable for generating distinct multi‐band QEMS in the magnetosphere.

Publisher

American Geophysical Union (AGU)

Subject

General Earth and Planetary Sciences,Geophysics

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