Variation of Electron Lifetime Due To Scattering by Electrostatic Electron Cyclotron Harmonic Waves in the Inner Magnetosphere With Electron Distribution Parameters

Author:

Stoll Katja12ORCID,Pick Leonie1,Wang Dedong3ORCID,Cao Xing4ORCID,Ni Binbin4ORCID,Shprits Yuri235ORCID

Affiliation:

1. German Aerospace Center (DLR) Institute for Solar‐Terrestrial Physics Neustrelitz Germany

2. Institute of Physics and Astronomy University of Potsdam Potsdam Germany

3. GFZ German Research Centre for Geosciences Potsdam Germany

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

5. Department of Earth, Planetary, and Space Sciences University of California, Los Angeles Los Angeles CA USA

Abstract

AbstractThrough resonant wave‐particle interactions with electrostatic electron cyclotron harmonic (ECH) waves, low‐energy plasma sheet electrons can be scattered into the atmospheric loss cone and precipitate. This process can be investigated by calculating bounce‐averaged quasi‐linear diffusion coefficients. However, the numerical calculation of ECH wave‐induced scattering rates requires the specification of several parameters, including the properties of the hot plasma sheet electrons responsible for the wave excitation. The dependence of the diffusion coefficients on these parameters and the exact contribution of scattering by ECH waves to diffuse auroral precipitation is still poorly understood and has not been carefully quantified yet. In this study, we calculate bounce‐averaged quasi‐linear scattering rates and compare the resulting lifetimes to the strong diffusion limit. We vary the temperature, plasma density, and loss cone parameters of the hot component in the electron loss cone distribution over a large range based on previous studies and observations. By adopting a new model that derives the wave normal angle from the midpoint and the angular width of the growth rate profile, our findings suggest that the electron lifetime near the loss cone is not significantly affected by the hot electron temperature and loss cone parameters. However, there is an increase in electron lifetimes with increasing plasma density. For an electric field amplitude of 1 mV/m, the electron lifetime is below or equal to the lifetime calculated using the strong diffusion limit up to E = 0.25 keV when n = 1.5 cm−3, and up to E = 0.22 keV when n = 9 cm−3.

Publisher

American Geophysical Union (AGU)

Subject

Space and Planetary Science,Geophysics

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