Investigation on upstream ion events from L1 point observation: New Insights

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Main Authors: Dalal, Bijoy, Chakrabarty, Dibyendu, Cohen, Christina M. S., Srivastava, Nandita
Format: Preprint
Published: 2024
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author Dalal, Bijoy
Chakrabarty, Dibyendu
Cohen, Christina M. S.
Srivastava, Nandita
author_facet Dalal, Bijoy
Chakrabarty, Dibyendu
Cohen, Christina M. S.
Srivastava, Nandita
contents Origin of energetic upstream ions propagating towards the Sun from the Earth's bow shock is not understood clearly. In this letter, relationship between solar wind suprathermal and upstream ions has been investigated by analyzing fluxes of H, 4He, and CNO obtained from multidirectional in-situ measurements at the first Lagrange point of the Sun-Earth system during 2012-2014. 49 upstream events have been selected based on flux enhancements of the upstream ions in comparison with the solar wind suprathermal ions. An energy cut-off at less than 300 keV is observed for the upstream events. This is attributed to the efficacy of the particle acceleration process near the bow shock. Interestingly, spectra of upstream ions soften systematically as compared to the spectra of their solar wind counterpart with decreasing mass of elements. The degree of spectral softening increases with decreasing mass-to-charge ratio of the species. Since during most of the events the interplanetary magnetic field was radial, we argue that cross-field diffusion of upstream ions gives rise to the modulation (spectral softening) of upstream ions, which is dependent on the mass-to-charge ratio of species. Our work indicates towards a systematic change in solar wind suprathermal ions after interaction with the bow shock.
format Preprint
id arxiv_https___arxiv_org_abs_2410_13243
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Investigation on upstream ion events from L1 point observation: New Insights
Dalal, Bijoy
Chakrabarty, Dibyendu
Cohen, Christina M. S.
Srivastava, Nandita
Solar and Stellar Astrophysics
Earth and Planetary Astrophysics
Plasma Physics
Space Physics
Origin of energetic upstream ions propagating towards the Sun from the Earth's bow shock is not understood clearly. In this letter, relationship between solar wind suprathermal and upstream ions has been investigated by analyzing fluxes of H, 4He, and CNO obtained from multidirectional in-situ measurements at the first Lagrange point of the Sun-Earth system during 2012-2014. 49 upstream events have been selected based on flux enhancements of the upstream ions in comparison with the solar wind suprathermal ions. An energy cut-off at less than 300 keV is observed for the upstream events. This is attributed to the efficacy of the particle acceleration process near the bow shock. Interestingly, spectra of upstream ions soften systematically as compared to the spectra of their solar wind counterpart with decreasing mass of elements. The degree of spectral softening increases with decreasing mass-to-charge ratio of the species. Since during most of the events the interplanetary magnetic field was radial, we argue that cross-field diffusion of upstream ions gives rise to the modulation (spectral softening) of upstream ions, which is dependent on the mass-to-charge ratio of species. Our work indicates towards a systematic change in solar wind suprathermal ions after interaction with the bow shock.
title Investigation on upstream ion events from L1 point observation: New Insights
topic Solar and Stellar Astrophysics
Earth and Planetary Astrophysics
Plasma Physics
Space Physics
url https://arxiv.org/abs/2410.13243