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Parker Solar Probe Observations of High Plasma β Solar Wind From the Streamer BeltIn general, slow solar wind from the streamer belt forms a high plasma β equatorial plasma sheet around the heliospheric current sheet (HCS) crossing, namely, the heliospheric plasma sheet (HPS). Current Parker Solar Probe (PSP) observations show that the HCS crossings near the Sun could be full or partial current sheet (PCS) crossings, and they share some common features but also have different properties. In this work, using the PSP observations from encounters 4–10, we identify streamer belt solar wind from enhancements in plasma β, and we further use electron pitch angle distributions to separate it into HPS solar wind around the full HCS crossings and PCS solar wind in the vicinity of PCS crossings. Based on our analysis, we find that the PCS solar wind has different characteristics as compared with HPS solar wind: (a) the PCS solar wind could be non-pressure-balanced structures rather than magnetic holes, and the total pressure enhancement mainly results from the less reduced magnetic pressure; (b) some of the PCS solar wind is mirror-unstable; and (c) the PCS solar wind is dominated by very low helium abundance but varied alpha–proton differential speed. We suggest that the PCS solar wind could originate from coronal loops deep inside the streamer belt, and it is pristine solar wind that still actively interacts with ambient solar wind; thus, it is valuable for further investigations of the heating and acceleration of slow solar wind.
Document ID
20230004343
Acquisition Source
Goddard Space Flight Center
Document Type
Reprint (Version printed in journal)
Authors
Jia Huang ORCID
(University of California, Berkeley Berkeley, California, United States)
J C Kasper ORCID
(BWX Technologies Lynchburg, Virginia, United States)
Davin E Larson ORCID
(University of California, Berkeley Berkeley, California, United States)
Michael D McManus ORCID
(University of California, Berkeley Berkeley, California, United States)
P Whittlesey ORCID
(University of California, Berkeley Berkeley, California, United States)
Roberto Livi ORCID
(University of California, Berkeley Berkeley, California, United States)
Ali Rahmati ORCID
(University of California, Berkeley Berkeley, California, United States)
Orlando Romeo ORCID
(University of California, Berkeley Berkeley, California, United States)
K G Klein ORCID
(University of Arizona Tucson, Arizona, United States)
Weijie Sun ORCID
(University of Michigan–Ann Arbor Ann Arbor, Michigan, United States)
Bart van der Holst ORCID
(University of Michigan–Ann Arbor Ann Arbor, Michigan, United States)
Zhenguang Huang ORCID
(University of Michigan–Ann Arbor Ann Arbor, Michigan, United States)
Lan K Jian ORCID
(Goddard Space Flight Center Greenbelt, Maryland, United States)
Adam Szabo ORCID
(Goddard Space Flight Center Greenbelt, Maryland, United States)
J L Verniero ORCID
(Goddard Space Flight Center Greenbelt, Maryland, United States)
C H K Chen ORCID
(Queen Mary University of London London, United Kingdom)
B Lavraud ORCID
(Research Institute in Astrophysics and Planetology Toulouse, France)
Mingzhe Liu ORCID
(Laboratory of Space Studies and Instrumentation in Astrophysics Meudon, France)
Samuel T Badman ORCID
(Smithsonian Astrophysical Observatory Cambridge, Massachusetts, United States)
Tatiana Niembro ORCID
(Smithsonian Astrophysical Observatory Cambridge, Massachusetts, United States)
Kristoff Paulson ORCID
(Smithsonian Astrophysical Observatory Cambridge, Massachusetts, United States)
M Stevens ORCID
(Smithsonian Astrophysical Observatory Cambridge, Massachusetts, United States)
A W Case ORCID
(Smithsonian Astrophysical Observatory Cambridge, Massachusetts, United States)
Marc Pulupa ORCID
(University of California, Berkeley Berkeley, California, United States)
Stuart D Bale ORCID
(University of California, Berkeley Berkeley, California, United States)
J S Halekas ORCID
(University of Iowa Iowa City, Iowa, United States)
Date Acquired
April 3, 2023
Publication Date
March 29, 2023
Publication Information
Publication: Astrophysical Journal Supplement
Publisher: American Astronomical Society
Volume: 265
Issue: 2
Issue Publication Date: April 1, 2023
ISSN: 0067-0049
e-ISSN: 1538-4365
Subject Category
Solar Physics
Funding Number(s)
WBS: 388443.04.01
CONTRACT_GRANT: NNN06AA01C
CONTRACT_GRANT: 80GSFC23CA004
CONTRACT_GRANT: NNH10CC04C
CONTRACT_GRANT: 80NSSC22K101
CONTRACT_GRANT: 80NSSC22K1017
Distribution Limits
Public
Copyright
Portions of document may include copyright protected material.
Technical Review
Single Expert
Keywords
Slow solar wind
Interplanetary magnetic fields
Space plasmas
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