Journal article
Characteristics of plasma boundaries with large density gradients and their effects on Kelvin–Helmholtz instability
Frontiers in astronomy and space sciences, Vol.11, 1394817
05/01/2024
DOI: 10.3389/fspas.2024.1394817
Abstract
Boundaries between space plasmas occur in numerous contexts and scales, from astrophysical jets to planetary magnetospheres. Mass and momentum transport across boundaries poses a fundamental problem in magnetospheric physics. Kelvin–Helmholtz instability (KHI) is a promising mechanism to facilitate transport. Although previous studies have suggested KHI occurrence in various space plasmas, theory predicts that compressibility prevents KHI excitation at boundaries with large density gradients because of previously considered boundary structures where density varies with velocity. Based on the observations of a large density gradient boundary by MAVEN at Mars, where we can observe an extreme case, in this study, we show that it is the entropy, instead of the previously considered density, that varies with the velocity in the real velocity-sheared boundary. The entropy-based boundary structure places the velocity shear in a lower-density region than the traditional density-based structure and weakens the compressibility effect. This new boundary structure thus enables KHI excitation even at large density gradient boundaries, such as at the ionopause of unmagnetized planets and the plasmapause of magnetized planets. The result suggests the ubiquitous occurrence of KHI in the plasma universe and emphasizes its important role in planetary cold plasma escape from unmagnetized planets.
Details
- Title: Subtitle
- Characteristics of plasma boundaries with large density gradients and their effects on Kelvin–Helmholtz instability
- Creators
- K. Seki - Tokyo University of ScienceY. Matsumoto - Chiba UniversityN. Terada - Tohoku UniversityT. Hara - University of California, BerkeleyD. A. Brain - University of Colorado BoulderH. Nakagawa - Tohoku UniversityJ. P. McFadden - University of California, BerkeleyJ. S. Halekas - University of IowaS. Ruhunusiri - University of Colorado BoulderD. L. Mitchell - University of California, BerkeleyL. Andersson - University of Colorado BoulderJ. R. Espley - Goddard Space Flight CenterD. N. Baker - University of Colorado BoulderJ. G. Luhmann - University of California, BerkeleyB. M. Jakosky - University of Colorado Boulder
- Resource Type
- Journal article
- Publication Details
- Frontiers in astronomy and space sciences, Vol.11, 1394817
- Publisher
- Frontiers Media S.A
- DOI
- 10.3389/fspas.2024.1394817
- eISSN
- 2296-987X
- Language
- English
- Date published
- 05/01/2024
- Academic Unit
- Physics and Astronomy
- Record Identifier
- 9984634945902771
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