Feasibility study of upper atmosphere density measurement on the ISS by observations of the CXB transmitted through the Earth rim

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Main Authors: Kishimoto, Takumi, Nobukawa, Kumiko K., Takeda, Ayaki, Tsuru, Takeshi G., Katsuda, Satoru, Kazuhiro, Nakazawa, Mori, Koji, Nobukawa, Masayoshi, Uchida, Hiroyuki, Kawabe, Yoshihisa, Kuwano, Satoru, Kurogi, Eisuke, Ito, Yamato, Aoki, Yuma
Format: Preprint
Published: 2024
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author Kishimoto, Takumi
Nobukawa, Kumiko K.
Takeda, Ayaki
Tsuru, Takeshi G.
Katsuda, Satoru
Kazuhiro, Nakazawa
Mori, Koji
Nobukawa, Masayoshi
Uchida, Hiroyuki
Kawabe, Yoshihisa
Kuwano, Satoru
Kurogi, Eisuke
Ito, Yamato
Aoki, Yuma
author_facet Kishimoto, Takumi
Nobukawa, Kumiko K.
Takeda, Ayaki
Tsuru, Takeshi G.
Katsuda, Satoru
Kazuhiro, Nakazawa
Mori, Koji
Nobukawa, Masayoshi
Uchida, Hiroyuki
Kawabe, Yoshihisa
Kuwano, Satoru
Kurogi, Eisuke
Ito, Yamato
Aoki, Yuma
contents Measurements of the upper atmosphere at ~100 km are important to investigate climate change, space weather forecasting, and the interaction between the Sun and the Earth. Atmospheric occultations of cosmic X-ray sources are an effective technique to measure the neutral density in the upper atmosphere. We are developing the instrument SUIM dedicated to continuous observations of atmospheric occultations. SUIM will be mounted on a platform on the exterior of the International Space Station for six months and pointed at the Earth's rim to observe atmospheric absorption of the cosmic X-ray background (CXB). In this paper, we conducted a feasibility study of SUIM by estimating the CXB statistics and the fraction of the non-X-ray background (NXB) in the observed data. The estimated CXB statistics are enough to evaluate the atmospheric absorption of CXB for every 15 km of altitude. On the other hand, the NXB will be dominant in the X-ray spectra of SUIM. Assuming that the NXB per detection area of SUIM is comparable to that of the soft X-ray Imager onboard Hitomi, the NXB level will be much higher than the CXB one and account for ~80% of the total SUIM spectra.
format Preprint
id arxiv_https___arxiv_org_abs_2407_18507
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Feasibility study of upper atmosphere density measurement on the ISS by observations of the CXB transmitted through the Earth rim
Kishimoto, Takumi
Nobukawa, Kumiko K.
Takeda, Ayaki
Tsuru, Takeshi G.
Katsuda, Satoru
Kazuhiro, Nakazawa
Mori, Koji
Nobukawa, Masayoshi
Uchida, Hiroyuki
Kawabe, Yoshihisa
Kuwano, Satoru
Kurogi, Eisuke
Ito, Yamato
Aoki, Yuma
Instrumentation and Methods for Astrophysics
Earth and Planetary Astrophysics
Atmospheric and Oceanic Physics
Measurements of the upper atmosphere at ~100 km are important to investigate climate change, space weather forecasting, and the interaction between the Sun and the Earth. Atmospheric occultations of cosmic X-ray sources are an effective technique to measure the neutral density in the upper atmosphere. We are developing the instrument SUIM dedicated to continuous observations of atmospheric occultations. SUIM will be mounted on a platform on the exterior of the International Space Station for six months and pointed at the Earth's rim to observe atmospheric absorption of the cosmic X-ray background (CXB). In this paper, we conducted a feasibility study of SUIM by estimating the CXB statistics and the fraction of the non-X-ray background (NXB) in the observed data. The estimated CXB statistics are enough to evaluate the atmospheric absorption of CXB for every 15 km of altitude. On the other hand, the NXB will be dominant in the X-ray spectra of SUIM. Assuming that the NXB per detection area of SUIM is comparable to that of the soft X-ray Imager onboard Hitomi, the NXB level will be much higher than the CXB one and account for ~80% of the total SUIM spectra.
title Feasibility study of upper atmosphere density measurement on the ISS by observations of the CXB transmitted through the Earth rim
topic Instrumentation and Methods for Astrophysics
Earth and Planetary Astrophysics
Atmospheric and Oceanic Physics
url https://arxiv.org/abs/2407.18507