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Lower-Hybrid Wave Structures and Interactions With Electrons Observed in Magnetotail Reconnection Diffusion RegionsWe investigate waves close to the lower-hybrid frequency in 12 magnetotail reconnection electron diffusion region (EDR) events with guide field levels of near-zero to 30%. In about half of the events, the wave vector has a small component along the current sheet normal, consistent with known lower-hybrid drift wave properties, but the perpendicular magnetic field fluctuations can be comparable or greater than the parallel component, a feature unique to the waves inside and adjacent to EDRs. Another new wave property is that the wave vector has a significant component along the current sheet normal in some events and completely along the normal for one event. In 1/4of the events, the βˆ‡βˆ™π‘·(sub 𝑒) term has a significant contribution to the wave electric field, possibly a feature of lower-hybrid waves more likely to exist in the diffusion region than further away from the X-line. Electron temperature variations are correlated with the wave potential, due to wave electric field acceleration and crossings at the corrugated separatrix region with different amounts of mixing between reconnection inflowing and outflowing populations. The latter also leads to the anti-correlation between parallel and perpendicular temperature components. Using four-spacecraft measurements, the magnetic field line twisting is demonstrated by the correlated fluctuations in (βˆ‡Γ—π‘½(sub 𝐸×𝐡))||and (βˆ‡Γ—π)||. The lower-hybrid wave in the EDR of weak guide field reconnection may be generated near separatrices and penetrate to the mid-plane or locally generated, and the latter possibility is beyond the prediction of previous reconnection simulations.
Document ID
20220016415
Acquisition Source
Goddard Space Flight Center
Document Type
Accepted Manuscript (Version with final changes)
Authors
Shan Wang ORCID
(University of Maryland, College Park College Park, Maryland, United States)
Li-Jen Chen ORCID
(Goddard Space Flight Center Greenbelt, Maryland, United States)
Naoki Bessho ORCID
(University of Maryland, College Park College Park, Maryland, United States)
Jonathan Ng ORCID
(University of Maryland, College Park College Park, Maryland, United States)
Michael Hesse ORCID
(Ames Research Center Mountain View, California, United States)
Daniel B Graham ORCID
(Swedish Institute of Space Physics Kiruna, Sweden)
Olivia Le Contel ORCID
(Laboratoire de Physique des Plasmas Palaiseau, France)
Daniel Gershman ORCID
(Goddard Space Flight Center Greenbelt, Maryland, United States)
Barbara Giles ORCID
(Goddard Space Flight Center Greenbelt, Maryland, United States)
Date Acquired
October 31, 2022
Publication Date
April 26, 2022
Publication Information
Publication: Journal of Geophysical Research: Space Physics
Publisher: American Geophysical Union
Volume: 127
Issue: 5
Issue Publication Date: May 1, 2022
e-ISSN: 2169-9402
Subject Category
Plasma Physics
Funding Number(s)
CONTRACT_GRANT: 80NSSC18K1369
CONTRACT_GRANT: 80NSSC21K1795
CONTRACT_GRANT: DOE DESC0016278
CONTRACT_GRANT: NSF AGS-2010231
Distribution Limits
Public
Copyright
Portions of document may include copyright protected material.
Technical Review
Single Expert
Keywords
Magnetic reconnection
Lower-hybrid wave
Electron heating
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