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Self-Similar Outflows at the Source of the Fast Solar Wind: A Smoking Gun of Multiscale Impulsive Reconnection?We present results of a quantitative analysis of structured plasma outflows above a polar coronal hole observed by the Atmospheric Imaging Assembly (AIA) on board the Solar Dynamics Observatory (SDO) spacecraft. In a 6 hr interval of continuous high-cadence SDO/AIA images, we identified more than 2300 episodes of small-scale plasma flows in the polar corona. The mean upward flow speed measured by the surfing transform technique is estimated to be 122 ± 34 km s−1, which is comparable to the local sound speed. The typical recurrence period of the flow episodes is 10–30 minutes, and the mean duration and transverse size of each episode are about 3–5 minutes and 3–4 Mm, respectively. The largest identifiable episodes last for tens of minutes and reach widths up to 40 Mm. For the first time, we demonstrate that the polar coronal-hole outflows obey a family of power-law probability distributions characteristic of impulsive interchange magnetic reconnection. Turbulent photospheric driving may play a crucial role in releasing magnetically confined plasma onto open field. The estimated occurrence rate of the detected self-similar coronal outflows is sufficient for them to make a dominant contribution to the fast-wind mass and energy fluxes and to account for the wind's small-scale structure.
Document ID
20230013377
Acquisition Source
Goddard Space Flight Center
Document Type
Accepted Manuscript (Version with final changes)
Authors
Vadim M. Uritsky ORCID
(Catholic University of America Washington D.C., District of Columbia, United States)
Judith T. Karpen ORCID
(Goddard Space Flight Center Greenbelt, Maryland, United States)
Noure E. Raouafi ORCID
(Johns Hopkins University Applied Physics Laboratory North Laurel, Maryland, United States)
Pankaj Kumar ORCID
(American University Washington, DC)
C. Richard Devore ORCID
(Goddard Space Flight Center Greenbelt, Maryland, United States)
Craig E. DeForest ORCID
(Southwest Research Institute San Antonio, Texas, United States)
Date Acquired
September 13, 2023
Publication Date
October 4, 2023
Publication Information
Publication: Astrophysical Journal Letters
Publisher: American Astronomical Society/IOP Publishing
Volume: 955
Issue: 2
Issue Publication Date: October 1, 2023
ISSN: 2041-8205
e-ISSN: 2041-8213
Subject Category
Space Sciences (General)
Funding Number(s)
WBS: 791926.02.06.01.11
CONTRACT_GRANT: NNN06AA01C
CONTRACT_GRANT: 80NSSC20K0812
CONTRACT_GRANT: 80NSSC21M0180
CONTRACT_GRANT: NSF 2229336
Distribution Limits
Public
Copyright
Portions of document may include copyright protected material.
Technical Review
Single Expert
Keywords
jets
corona
UV radiation
magnetic fields
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