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In situ signature of cyclotron resonant heating in the solar wind

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Title: In situ signature of cyclotron resonant heating in the solar wind
Authors: Bowen, TA
Chandran, BDG
Squire, J
Bale, SD
Duan, D
Klein, KG
Larson, D
Mallet, A
McManus, MD
Meyrand, R
Verniero, JL
Woodham, LD
Item Type: Journal Article
Abstract: The dissipation of magnetized turbulence is an important paradigm for describing heating and energy transfer in astrophysical environments such as the solar corona and wind; however, the specific collisionless processes behind dissipation and heating remain relatively unconstrained by measurements. Remote sensing observations have suggested the presence of strong temperature anisotropy in the solar corona consistent with cyclotron resonant heating. In the solar wind, in situ magnetic field measurements reveal the presence of cyclotron waves, while measured ion velocity distribution functions have hinted at the active presence of cyclotron resonance. Here, we present Parker Solar Probe observations that connect the presence of ion-cyclotron waves directly to signatures of resonant damping in observed proton-velocity distributions using the framework of quasilinear theory. We show that the quasilinear evolution of the observed distribution functions should absorb the observed cyclotron wave population with a heating rate of 10 − 14     W / m 3 , indicating significant heating of the solar wind.
Issue Date: 14-Oct-2022
Date of Acceptance: 16-Sep-2022
URI: http://hdl.handle.net/10044/1/101625
DOI: 10.1103/physrevlett.129.165101
ISSN: 0031-9007
Publisher: American Physical Society (APS)
Start Page: 1
End Page: 8
Journal / Book Title: Physical Review Letters
Volume: 129
Issue: 16
Copyright Statement: © 2022 American Physical Society
Publication Status: Published
Article Number: 165101
Online Publication Date: 2022-10-14
Appears in Collections:Space and Atmospheric Physics
Physics
Faculty of Natural Sciences