Evidence of Interaction between Ion-Scale Waves and Ion Velocity Distributions in the Solar Wind
Yogesh, Leon Ofman, Scott A Boardsen, Kristopher Klein, Mihailo, Martinovic, Viacheslav M Sadykov, Jaye Verniero, Niranjana Shankarappa, Lan K, Jian, Parisa Mostafavi, Jia Huang, and K. W. Paulson

TL;DR
This study presents in situ observations from Parker Solar Probe showing ion-scale waves linked to ion velocity distribution deviations, revealing insights into solar wind heating, acceleration, and energy transfer processes.
Contribution
It combines observational data, linear analysis, and hybrid kinetic simulations to explore wave-particle interactions and their role in solar wind dynamics near perihelia.
Findings
Proton beam density increases during wave activity, sometimes surpassing core density.
Wave power decreases when beam density exceeds core density.
Ion velocity distributions suggest a reconnection event at a heliospheric current sheet.
Abstract
Recent in situ observations from Parker Solar Probe (PSP) near perihelia reveal ion beams, temperature anisotropies, and kinetic wave activity. These features are likely linked to solar wind heating and acceleration. During PSP Encounter 17 (at ) on Sep-26-2023, the PSP/FIELDS instrument detected enhanced ion-scale wave activity associated with deviations from local thermodynamic equilibrium in ion velocity distribution functions (VDFs) observed by the PSP/Solar Probe Analyzers-Ion (SPAN-I). Dense beams (secondary populations) were present in the proton VDFs during this wave activity. Using bi-Maxwellian fits to the proton VDFs, we found that the density of the proton beam population increased during the wave activity and, unexpectedly, surpassed the core population at certain intervals. Interestingly, the wave power was reduced during the intervals when the beam population…
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Taxonomy
TopicsSolar and Space Plasma Dynamics
