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PUI Heating in the Supersonic Solar Wind

Authors :
Parisa Mostafavi
Laxman Adhikari
Bishwas L. Shrestha
Gary P. Zank
Merav Opher
Matthew E. Hill
Heather A. Elliott
Pontus C. Brandt
Ralph L. McNutt
David J. McComas
Andrew R. Poppe
Elena Provornikova
Romina Nikoukar
Peter Kollmann
S. Alan Stern
Kelsi N. Singer
Anne Verbiscer
Joel Parker
Source :
The Astrophysical Journal, Vol 979, Iss 2, p 222 (2025)
Publication Year :
2025
Publisher :
IOP Publishing, 2025.

Abstract

The outer heliosphere is profoundly influenced by nonthermal energetic pickup ions (PUIs), which dominate the internal pressure of the solar wind beyond ~10 au, surpassing both solar wind and magnetic pressures. PUIs are formed mostly through charge exchange between interstellar neutral atoms and solar wind ions. This study examines the apparent heating of PUIs in the distant supersonic solar wind before reaching the heliospheric termination shock. New Horizons’ SWAP observations reveal an unexpected PUI temperature change between 2015 and 2020, with a notable bump in PUI temperature. Concurrent observations from the ACE and Wind spacecraft at 1 au indicate a ~50% increase in solar wind dynamic pressure at the end of 2014. Our simulation suggests that the bump observed in the PUI temperature by New Horizons is largely associated with the enhanced solar wind dynamic pressure observed at 1 au. Additional PUI temperature enhancements imply the involvement of other heating mechanisms. Analysis of New Horizons data reveals a correlation between shocks and PUI heating during the declining phase of the solar cycle. Using a PUI-mediated plasma model, we explore shock structures and PUI heating, finding that shocks preferentially heat PUIs over the thermal solar wind in the outer heliosphere. We also show that the broad shock thickness observed by New Horizons is due to the large diffusion coefficient associated with PUIs. Shocks and compression regions in the distant supersonic solar wind lead to elevated PUI temperatures and thus they can increase the production of energetic neutral atoms with large energy.

Details

Language :
English
ISSN :
15384357
Volume :
979
Issue :
2
Database :
Directory of Open Access Journals
Journal :
The Astrophysical Journal
Publication Type :
Academic Journal
Accession number :
edsdoj.6af96e8fb64a426391338cdc88dff8a5
Document Type :
article
Full Text :
https://doi.org/10.3847/1538-4357/ada891