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- W2804223177 abstract "Abstract Near‐Earth magnetotail reconnection leads to formation of earthward and tailward directed plasma outflows with an increased north‐south magnetic field strength(| B z |) at their leading edges. We refer to these regions of enhanced | B z | and magnetic flux transport E y as reconnection ejecta . They are composed of what have been previously referred to as earthward dipolarizing flux bundles (DFBs) and tailward rapid flux transport (RFT) events. Using two‐point observations of magnetic and electric fields and particle fluxes by the Acceleration, Reconnection, Turbulence, and Electrodynamics of Moon's Interaction with the Sun probes orbiting around Moon at geocentric distances R ∼ 60 R E , we statistically studied plasma moments and particle energy spectra in RFTs and compared them with those observed within DFBs in the near‐Earth plasma sheet by the Time History of Events and Macroscale Interactions during Substorms probes. We found that the ion average temperatures and spectral slopes in RFTs at R ∼ 60 R E are close to those in DFBs observed at 15 < R < 25 R E , just earthward of the probable reconnection region location. Assuming plasma sheet pressure balance, the average RFT ion temperature corresponds to a lobe field B L ∼20 nT. This leads us to suggest that the ion population within the tailward ejecta originated in the midtail plasma sheet at 20≤ R ≤30 R E and propagated to the Acceleration, Reconnection, Turbulence, and Electrodynamics of Moon's Interaction with the Sun location without undergoing any further energy gain. Conversely, electron temperatures in DFBs at 15 < R < 25 R E are a factor of 2.5 higher than those in RFTs at R ∼ 60 R E ." @default.
- W2804223177 created "2018-06-01" @default.
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- W2804223177 date "2018-04-01" @default.
- W2804223177 modified "2023-09-26" @default.
- W2804223177 title "Near-Earth Reconnection Ejecta at Lunar Distances" @default.
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- W2804223177 doi "https://doi.org/10.1002/2017ja025079" @default.
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