Theory of ion holes in plasmas with flat-topped electron distributions

Author:

Aravindakshan Harikrishnan1ORCID,Vasko Ivan Y.23ORCID,Kakad Amar1ORCID,Kakad Bharati1ORCID,Wang Rachel24ORCID

Affiliation:

1. Indian Institute of Geomagnetism 1 , New Panvel, Navi Mumbai 410218, India

2. Space Sciences Laboratory, University of California at Berkeley 2 , Berkeley, California 94720, USA

3. Space Research Institute of Russian Academy of Sciences 3 , Moscow 117997, Russia

4. Department of Physics, University of California at Berkeley 4 , Berkeley, California 94720, USA

Abstract

Coherent bipolar electric field structures with negative unipolar potentials are widely observed in space plasmas. These bipolar structures are often found to be ion Bernstein Greene Kruskal (BGK) modes or ion holes. Most theoretical models of ion holes assume them to be stationary with respect to the background plasma that follows either Maxwellian or kappa-type distribution. In this paper, we present a new theoretical model of ion holes where the structures are non-stationary, and electrons follow flat-topped distribution. We use the classical BGK approach to derive the inequality separating allowed and forbidden simultaneous values of amplitude and spatial width of ion holes. The model reveals that the parametric space for the existence of ion holes decreases with their speed. We applied the developed model to the largest available dataset of ion holes obtained from the magnetospheric multiscale spacecraft observations in the Earth's bow shock region.

Funder

NASA Heliophysics Guest Investigator Grant

Publisher

AIP Publishing

Subject

Condensed Matter Physics

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