Efficient Energy Conversion through Vortex Arrays in the Turbulent Magnetosheath

Author:

Hou ChuanpengORCID,He JiansenORCID,Duan DieORCID,Zhu XingyuORCID,Li Wenya,Verscharen DanielORCID,Liu TerryORCID,Wang TieyanORCID

Abstract

Abstract Turbulence is often enhanced when transmitted through a collisionless plasma shock. We investigate how the enhanced turbulent energy in the Earth's magnetosheath effectively dissipates via vortex arrays. This research topic is of great importance as it relates to particle energization at astrophysical shocks across the universe. Wave modes and intermittent coherent structures are the key candidate mechanisms for energy conversion in turbulent plasmas. Here, by comparing in-situ measurements in the Earth's magnetosheath with a theoretical model, we find the existence of vortex arrays at the transition between the downstream regions of the Earth's bow shock. Vortex arrays consist of quasi-orthogonal kinetic waves and exhibit both high volumetric filling factors and strong local energy conversion, thereby showing a greater dissipative energization than traditional waves and coherent structures. Therefore, we propose that vortex arrays are a promising mechanism for efficient energy conversion in the sheath regions downstream of astrophysical shocks.

Funder

National Natural Science Foundation of China

China National Space Administration

National Key R&D Program of China

UKRI ∣ Science and Technology Facilities Council

China Postdoctoral Science Foundation

China Scholarship Council

Publisher

American Astronomical Society

Subject

Space and Planetary Science,Astronomy and Astrophysics

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