Fast Tearing Mode Driven by Demagnetized Electrons

Author:

Tsareva Olga O.1ORCID,Leonenko Makar V.12ORCID,Grigorenko Elena E.1ORCID,Malova Helmi V.13ORCID,Popov Victor Yu.145,Zelenyi Lev M.1ORCID

Affiliation:

1. Space Research Institute of RAS Moscow Russia

2. Moscow Institute of Physics and Technology Dolgoprudny Russia

3. Skobeltsyn Institute of Nuclear Physics Lomonosov Moscow State University Moscow Russia

4. Graduate School of Business HSE University Moscow Russia

5. Department of Physics Lomonosov Moscow State University Moscow Russia

Abstract

AbstractRecent MMS observations have discovered electron‐scale super‐thin current sheets (STCSs) with a partial electron demagnetization, which distinguishes them from the ion‐scale TCSs traditionally observed by the Cluster mission. Our investigation focuses on the dynamics of STCSs and reveals new aspects influencing their stability. We use the earlier proposed 1D collisionless self‐consistent equilibrium STCS model and show that the free parameters of this model, such as the relative part of demagnetized electrons, their flow velocity and the pressure anisotropy of magnetized electron population, can contribute to the development of tearing instability. With the growth of these parameters, the STCS becomes thinner, which leads to the accumulation excess of a free energy. Stabilizing energy decreases due to the increase of a relative part of demagnetized electrons. Thus, demagnetized electrons in STCSs can provide the development of fast and short‐wavelength electron tearing modes.

Funder

Russian Science Foundation

Publisher

American Geophysical Union (AGU)

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