New high-precision measurement system for electron-positron pairs from sub-GeV/GeV gamma-rays in the emulsion telescope

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Hauptverfasser: Nakamura, Yuya, Aoki, Shigeki, Hayakawa, Tomohiro, Iyono, Atsushi, Karasuno, Ayaka, Kodama, Kohichi, Komatani, Ryosuke, Komatsu, Masahiro, Komiyama, Masahiro, Kuretsubo, Kenji, Marushima, Toshitsugu, Matsuda, Syota, Morishima, Kunihiro, Morishita, Misaki, Naganawa, Naotaka, Nakamura, Mitsuhiro, Nakamura, Motoya, Nakamura, Takafumi, Nakano, Noboru, Nakano, Toshiyuki, Nishio, Akira, Oda, Miyuki, Rokujo, Hiroki, Sato, Osamu, Sugimura, Kou, Suzuki, Atsumu, Takahashi, Satoru, Torii, Mayu, Yamamoto, Saya, Yoshimoto, Masahiro
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Veröffentlicht: 2024
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author Nakamura, Yuya
Aoki, Shigeki
Hayakawa, Tomohiro
Iyono, Atsushi
Karasuno, Ayaka
Kodama, Kohichi
Komatani, Ryosuke
Komatsu, Masahiro
Komiyama, Masahiro
Kuretsubo, Kenji
Marushima, Toshitsugu
Matsuda, Syota
Morishima, Kunihiro
Morishita, Misaki
Naganawa, Naotaka
Nakamura, Mitsuhiro
Nakamura, Motoya
Nakamura, Takafumi
Nakano, Noboru
Nakano, Toshiyuki
Nishio, Akira
Oda, Miyuki
Rokujo, Hiroki
Sato, Osamu
Sugimura, Kou
Suzuki, Atsumu
Takahashi, Satoru
Torii, Mayu
Yamamoto, Saya
Yoshimoto, Masahiro
author_facet Nakamura, Yuya
Aoki, Shigeki
Hayakawa, Tomohiro
Iyono, Atsushi
Karasuno, Ayaka
Kodama, Kohichi
Komatani, Ryosuke
Komatsu, Masahiro
Komiyama, Masahiro
Kuretsubo, Kenji
Marushima, Toshitsugu
Matsuda, Syota
Morishima, Kunihiro
Morishita, Misaki
Naganawa, Naotaka
Nakamura, Mitsuhiro
Nakamura, Motoya
Nakamura, Takafumi
Nakano, Noboru
Nakano, Toshiyuki
Nishio, Akira
Oda, Miyuki
Rokujo, Hiroki
Sato, Osamu
Sugimura, Kou
Suzuki, Atsumu
Takahashi, Satoru
Torii, Mayu
Yamamoto, Saya
Yoshimoto, Masahiro
contents The GRAINE project observes cosmic gamma-rays, using a balloon-borne emulsion-film-based telescope in the sub-GeV/GeV energy band. We reported in our previous balloon experiment in 2018, GRAINE2018, the detection of the known brightest source, Vela pulsar, with the highest angular resolution ever reported in an energy range of $>$80 MeV. However, the emulsion scanning system used in the experiment was designed to achieve a high-speed scanning, and it was not accurate enough to ensure the optimum spacial resolution of the emulsion film and limited the performance. Here, we report a new high-precision scanning system that can be used to greatly improve the observation result of GRAINE2018 and also be employed in future experiments. The system involves a new algorithm that recognizes each silver grain on an emulsion film and is capable of measuring tracks with a positional resolution for the passing points of tracks of almost the same as the intrinsic resolution of nuclear emulsion film ($\sim$70 nm). This resolution is approximately one order of magnitude smaller than that obtained with the high-speed scanning system. With this system, an angular resolution for gamma-rays of 0.1$^\circ$ at 1 GeV is expected to be achieved. Furthermore, we successfully combine the new high-precision system with the existing high-speed system, establishing the system to make a high-speed and high-precision measurement. Employing these systems, we reanalyze the gamma-ray events detected previously by only the high-speed system in GRAINE2018 and obtain an about three times higher angular resolution (0.22$^\circ$) in 500--700 MeV than the original value. The high-resolution observation may bring new insights into the gamma-ray emission from the Galactic center region and may realize polarization measurements of high-energy cosmic gamma-rays.
format Preprint
id arxiv_https___arxiv_org_abs_2406_18335
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle New high-precision measurement system for electron-positron pairs from sub-GeV/GeV gamma-rays in the emulsion telescope
Nakamura, Yuya
Aoki, Shigeki
Hayakawa, Tomohiro
Iyono, Atsushi
Karasuno, Ayaka
Kodama, Kohichi
Komatani, Ryosuke
Komatsu, Masahiro
Komiyama, Masahiro
Kuretsubo, Kenji
Marushima, Toshitsugu
Matsuda, Syota
Morishima, Kunihiro
Morishita, Misaki
Naganawa, Naotaka
Nakamura, Mitsuhiro
Nakamura, Motoya
Nakamura, Takafumi
Nakano, Noboru
Nakano, Toshiyuki
Nishio, Akira
Oda, Miyuki
Rokujo, Hiroki
Sato, Osamu
Sugimura, Kou
Suzuki, Atsumu
Takahashi, Satoru
Torii, Mayu
Yamamoto, Saya
Yoshimoto, Masahiro
Instrumentation and Methods for Astrophysics
High Energy Astrophysical Phenomena
The GRAINE project observes cosmic gamma-rays, using a balloon-borne emulsion-film-based telescope in the sub-GeV/GeV energy band. We reported in our previous balloon experiment in 2018, GRAINE2018, the detection of the known brightest source, Vela pulsar, with the highest angular resolution ever reported in an energy range of $>$80 MeV. However, the emulsion scanning system used in the experiment was designed to achieve a high-speed scanning, and it was not accurate enough to ensure the optimum spacial resolution of the emulsion film and limited the performance. Here, we report a new high-precision scanning system that can be used to greatly improve the observation result of GRAINE2018 and also be employed in future experiments. The system involves a new algorithm that recognizes each silver grain on an emulsion film and is capable of measuring tracks with a positional resolution for the passing points of tracks of almost the same as the intrinsic resolution of nuclear emulsion film ($\sim$70 nm). This resolution is approximately one order of magnitude smaller than that obtained with the high-speed scanning system. With this system, an angular resolution for gamma-rays of 0.1$^\circ$ at 1 GeV is expected to be achieved. Furthermore, we successfully combine the new high-precision system with the existing high-speed system, establishing the system to make a high-speed and high-precision measurement. Employing these systems, we reanalyze the gamma-ray events detected previously by only the high-speed system in GRAINE2018 and obtain an about three times higher angular resolution (0.22$^\circ$) in 500--700 MeV than the original value. The high-resolution observation may bring new insights into the gamma-ray emission from the Galactic center region and may realize polarization measurements of high-energy cosmic gamma-rays.
title New high-precision measurement system for electron-positron pairs from sub-GeV/GeV gamma-rays in the emulsion telescope
topic Instrumentation and Methods for Astrophysics
High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2406.18335