A Substorm Injection Event and the Radiation Belt Structure Observed by Space
Radiation Detectors onboard Next Generation Small Satellite-1 (NEXTSat-1)
Author:
Yoo Ji-HyeonORCID, Lee Dae-YoungORCID, Kim EojinORCID, Seo HoonkyuORCID, Ryu KwangsunORCID, Kim Kyung-ChanORCID, Min KyoungwookORCID, Sohn JongdaeORCID, Lee JunchanORCID, Seon JonghoORCID, Kang Kyung-InORCID, Lee SeungukORCID, Park JaeheungORCID, Shin Goo-HwanORCID, Park SungOgORCID
Abstract
In this paper, we present observations of the Space Radiation Detectors (SRDs)
onboard the Next Generation Small Satellite-1 (NEXTSat-1) satellite. The SRDs, which are
a part of the Instruments for the study of Stable/Storm-time Space (ISSS), consist of
the Medium-Energy Particle Detector (MEPD) and the High-Energy Particle Detector (HEPD).
The MEPD can detect electrons, ions, and neutrals with energies ranging from 20 to 400
keV, and the HEPD can detect electrons over an energy range from 0.35 to 2 MeV. In this
paper, we report an event where particle flux enhancements due to substorm injections
are clearly identified in the MEPD A observations at energies of tens of keV.
Additionally, we report a specific example observation of the electron distributions
over a wide energy range in which we identify electron spatial distributions with
energies of tens to hundreds of keV from the MEPD and with energy ranging up to a few
MeV from the HEPD in the slot region and outer radiation belts. In addition, for an
~1.5-year period, we confirm that the HEPD successfully observed the well-known outer
radiation belt electron flux distributions and their variations in time and L shell in a
way consistent with the geomagnetic disturbance levels. Last, we find that the inner
edge of the outer radiation belt is mostly coincident with the plasmapause locations in
L, somewhat more consistent at subrelativistic energies than at relativistic energies.
Based on these example events, we conclude that the SRD observations are of reliable
quality, so they are useful for understanding the dynamics of the inner magnetosphere,
including substorms and radiation belt variations.
Publisher
The Korean Space Science Society
Subject
General Earth and Planetary Sciences,General Physics and Astronomy
Reference16 articles.
1. Cho J, Lee DY, Kim JH, Shin DK, Kim KC, et al., New model fit
functions of the plasmapause location determined using THEMIS observations during the
ascending phase of solar cycle 24, J. Geophys. Res. Space Phys. 120, 2877-2889 (2015).
10.1002/2015JA021030 2. Choi CR, Sohn J, Lee JC, Seo YM, Kang SB, et al., Scientific
missions and technologies of the ISSS on board the NEXTSat-1, J. Astron. Space Sci.
31, 73-81 (2014). 10.5140/JASS.2014.31.1.73 3. Jaynes AN, Baker DN, Singer HJ, Rodriguez JV, Loto’aniu TM, et
al., Source and seed populations for relativistic electrons: their roles in radiation
belt changes, J. Geophys. Res. Space Phys. 120, 7240-7254 (2015). 10.1002/2015JA021234 4. Kim E, Yoo JH, Kim HE, Seo H, Ryu K, et al., Initial operation
and preliminary results of the instrument for the study of stable/ storm-time space
(ISSS) on board the next generation small satellite-1 (NEXTSat-1), J. Astron. Space
Sci. 37, 209-218 (2020). 5. Kim KC, Shprits Y, Wang D, Quantifying the effect of
plasmaspheric hiss on the electron loss from the slot region, J. Geophys. Res. Space
Phys. 125 (2020). 10.1029/2019JA027555
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