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MMS Observations of Multiscale Hall Physics in the Magnetotail

Authors :
Alm, Love
André, Mats
Graham, Daniel B.
Khotyaintsev, Yuri V.
Vaivads, Andris
Chappell, Charles R.
Dargent, Jeremy
Fuselier, Stephen A.
Haaland, Stein
Lavraud, Benoit
Li, Wenya
Tenfjord, Paul
Toledo-Redondo, Sergio
Vines, Sarah K.
Alm, Love
André, Mats
Graham, Daniel B.
Khotyaintsev, Yuri V.
Vaivads, Andris
Chappell, Charles R.
Dargent, Jeremy
Fuselier, Stephen A.
Haaland, Stein
Lavraud, Benoit
Li, Wenya
Tenfjord, Paul
Toledo-Redondo, Sergio
Vines, Sarah K.
Publication Year :
2019

Abstract

We present Magnetospheric Multiscale mission (MMS) observations of Hall physics in the magnetotail, which compared to dayside Hall physics is a relatively unexplored topic. The plasma consists of electrons, moderately cold ions (T similar to 1.5 keV) and hot ions (T similar to 20 keV). MMS can differentiate between the cold ion demagnetization region and hot ion demagnetization regions, which suggests that MMS was observing multiscale Hall physics. The observed Hall electric field is compared with a generalized Ohm's law, accounting for multiple ion populations. The cold ion population, despite its relatively high initial temperature, has a significant impact on the Hall electric field. These results show that multiscale Hall physics is relevant over a much larger temperature range than previously observed and is relevant for the whole magnetosphere as well as for other astrophysical plasma.

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1235258792
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1029.2019GL084137