Curriculum Vitaes

Toyoaki Suzuki

  (鈴木 仁研)

Profile Information

Affiliation
Institute of Space and Astronautical Science, Japan Aerospace Exploration Agency
Degree
博士 (理学)(Sep, 2007, 東京大学)

Researcher number
30534599
J-GLOBAL ID
202101020754871070
researchmap Member ID
R000016314

Papers

 66
  • Keisuke Shinozaki, Toyoaki Suzuki, Noriko Y. Yamasaki, Yutaro Sekimoto, Tadayasu Dotani, Keisuke Yoshihara, Hiroyuki Sugita, Shoji Tsunematsu, Kenichi Kanao
    Cryogenics, 138 103795-103795, Mar, 2024  
  • Shugo Oguri, Tadayasu Dotani, Masahito Isshiki, Shota Iwabuchi, Tooru Kaga, Frederick T. Matsuda, Yasuyuki Miyazaki, Baptiste Mot, Ryo Nagata, Katsuhiro Narasaki, Hiroyuki Ogawa, Toshiaki Okudaira, Kimihide Odagiri, Thomas Prouve, Gilles Roudil, Yasutaka Satoh, Yutaro Sekimoto, Toyoaki Suzuki, Kazuya Watanuki, Seiji Yoshida, Keisuke Yoshihara
    Space Telescopes and Instrumentation 2022: Optical, Infrared, and Millimeter Wave, Aug 27, 2022  
  • Akio K. Inoue, Hidehiro Kaneda, Toru Yamada, Yuichi Harikane, Daisuke Ishihara, Tadayuki Kodama, Yutaka Komiyama, Takashi Moriya, Kentaro Motohara, Hideko Nomura, Masami Ouchi, Shinki Oyabu, Toyoaki Suzuki, Takehiko Wada, Issei Yamamura
    Space Telescopes and Instrumentation 2022: Optical, Infrared, and Millimeter Wave, Aug 27, 2022  
  • Hiroshi Maeshima, Kosei Matsumoto, Yasuhiro Hirahara, Takao Nakagawa, Ryoichi Koga, Yusuke Hanamura, Takehiko Wada, Koichi Nagase, Shinki Oyabu, Toyoaki Suzuki, Takuma Kokusho, Hidehiro Kaneda, Daichi Ishikawa
    Journal of Electronic Materials, 51(2) 564-576, Feb, 2022  Peer-reviewed
    Abstract To reveal the causes of infrared absorption in the wavelength region between electronic and lattice absorptions, we measured the temperature dependence of the absorption coefficient of p-type low-resistivity ($$\sim 10^2~ \Omega \mathrm{cm}$$) CdZnTe crystals. We measured the absorption coefficients of CdZnTe crystals in four wavelength bands ($$\lambda =6.45$$, 10.6, 11.6, 15.1$$~\mu $$m) over the temperature range of $$T=8.6$$-300 K with an originally developed system. The CdZnTe absorption coefficient was measured to be $$\alpha =0.3$$-0.5 $$\mathrm{cm}^{-1}$$ at $$T=300$$ K and $$\alpha =0.4$$-0.9 $$\mathrm{cm}^{-1}$$ at $$T=8.6$$ K in the investigated wavelength range. With an absorption model based on transitions of free holes and holes trapped at an acceptor level, we conclude that the absorption due to free holes at $$T=150$$-300 K and that due to trapped-holes at $$T<50$$ K are dominant absorption causes in CdZnTe. We also discuss a method to predict the CdZnTe absorption coefficient at cryogenic temperature based on the room-temperature resistivity.
  • Kimihide Odagiri, Masaru Saijo, Keisuke Shinozaki, Frederick Matsuda, Shugo Oguri, Toyoaki Suzuki, Hiroyuki Ogawa, Yutaro Sekimoto, Tadayasu Dotani, Kazuya Watanuki, Ryo Sugimoto, Keisuke Yoshihara, Katsuhiro Narasaki, Masahito Isshiki, Seiji Yoshida, Thomas Prouve, Jean-Marc Duval, Keith L. Thompson
    SPACE TELESCOPES AND INSTRUMENTATION 2022: OPTICAL, INFRARED, AND MILLIMETER WAVE, 12180, 2022  
    LiteBIRD is a JAXA-led international project that aims to test representative inflationary models by performing an all-sky cosmic microwave background radiation (CMB) polarization survey for 3 years at the Sun-Earth Lagrangian point L2. We aim to launch LiteBIRD in the late 2020s. The payload module (PLM) is mainly composed of the Low-Frequency Telescope (LFT), the Mid-Frequency Telescope and High-Frequency Telescope (MHFT), and a cryo-structure. To conduct the high-precision and high-sensitivity CMB observations, it is required to cool the telescopes down to less than 5 K and the detectors down to 100 mK. The high temperature stability is also an important design factor. It is essential to design and analyze the cryogenic thermal system for PLM. In this study, the heat balance, temperature distribution, and temperature stability of the PLM for the baseline design are evaluated by developing the transient thermal model. The effect of the Joule-Thomson (JT) coolers cold tip temperature variation, the periodical changes in subK Adiabatic Demagnetization Refrigerator (ADR) heat dissipation, and the satellite spin that generates the variable direction of solar flux incident are implemented in the model. The effect of contact thermal conductance in the LFT and the emissivity of the V-groove on the temperature distribution and heat balance are investigated. Based on the thermal analysis, it was confirmed that the PLM baseline design meets the requirement of the temperature and the cooling capability of the 4K-JT cooler. In addition, the temperatures of the V-groove and the LFT 5-K frame are sufficiently stable for the observation. The temperature stability of the Low Frequency Focal Plane (LF-FP) is also discussed in this paper.

Misc.

 31
  • 小田切公秀, 小川博之, 小栗秀悟, 篠崎慶亮, 杉本諒, 鈴木仁研, 関本裕太郎, 堂谷忠靖, 楢崎勝弘, 松田フレドリック, 吉原圭介, 綿貫一也, 一色雅仁, 吉田誠至, PROUVE Thomas, DUVAL Jean-Marc, THOMPSON Keith L.
    宇宙科学技術連合講演会講演集(CD-ROM), 67th, Oct, 2023  Corresponding author
  • 和田武彦, 金田英宏, 金田英宏, 石原大助, 長勢晃一, 内山瑞穂, 伊藤哲司, 國生拓摩, 平原靖大, 土川拓朗, 前嶋宏志, 前嶋宏志, 大西崇介, 大西崇介, 松本光生, 松本光生, HUANG Ting-Chi, HUANG Ting-Chi, 榎木谷海, 榎木谷海, 海老原大路, 海老原大路, 笠羽康正, 坂野井健, 大薮進喜, 鈴木仁研, 中川貴雄, 松原英雄, 山岸光義, WANG Shiang-Yu, 大山陽一
    日本天文学会年会講演予稿集, 2021, 2021  
  • 前嶋宏志, 前嶋宏志, 松本光生, 松本光生, 平原靖大, 古賀亮一, 花村悠祐, 中川貴雄, 和田武彦, 長勢晃一, 大藪進喜, 鈴木仁研, 國生拓摩, 金田英宏, 金田英宏, 石川大智
    日本天文学会年会講演予稿集, 2021, 2021  
  • 山村一誠, 金田英宏, 小川博之, 中川貴雄, 松原英雄, 山田亨, 鈴木仁研, 尾中敬, 河野孝太郎
    日本天文学会年会講演予稿集, 2021, 2021  
  • 東谷千比呂, 中川貴雄, 松原英雄, 鈴木仁研, 磯部直樹, 篠崎慶亮, 西城大, 松本潤, 澤田健一郎, 安藤麻紀子, 内田英樹, 北本和也, 佐藤洋一, 水谷忠均, 巳谷真司, 後藤健, 竹内伸介, 小川博之, 金田英宏
    日本天文学会年会講演予稿集, 2021, 2021  
  • 鈴木仁研, 中川貴雄, 小川博之, 北本和也, 篠崎慶亮, 竹内伸介, 内田英樹, 後藤健, 西城大, 佐藤洋一, 澤田健一郎, 東谷千比呂, 松原英雄, 松本純, 水谷忠均, 山田亨, 山村一誠, 金田英宏
    日本天文学会年会講演予稿集, 2021, 2021  
  • 山村一誠, 金田英宏, 小川博之, 中川貴雄, 松原英雄, 山田亨, 鈴木仁研, 和田武彦, 石原大助, 大藪進喜
    日本天文学会年会講演予稿集, 2021, 2021  
  • Takehiko Wada, Hidehiro Kaneda, Takuma Kokusho, Toyoaki Suzuki, Kumiko Morihana, Takurou Tsuchikawa, Yuki Kuroda, Daichi Ishikawa, Shinki Oyabu, Naoki Isobe, Daisuke Ishihara, Hideo Matsuhara, Koichi Nagase, Takao Nakagawa, Takafumi Ootsubo, Mitsuyoshi Yamagishi, Hiroshi Maeshima, Shunsuke Onishi, Kosei Matsumoto, Satoshi Itoh, Mizuho Uchiyama, Ryan Lau, Hiromichi Ebihara, Hanae Inami, Koji Kawabata, Yasumasa Kasaba, Takeshi Sakanoi, Yoshifusa Ita, Masayuki Akiyama, Itsuki Sakon, Takafumi Kamizuka, Takashi Miyata, Kohji Tsumura, Masato Naruse, Youichi Ohyama, Shiang-Yu Wang, Hiroshi Shibai
    Space Telescopes and Instrumentation 2020: Optical, Infrared, and Millimeter Wave, Dec 13, 2020  Corresponding author
  • Hiroshi Maeshima, Kosei Matsumoto, Yasuhiro Hirahara, Takao Nakagawa, Takehiko Wada, Koichi Nagase, Shinki Oyabu, Toyoaki Suzuki, Takuma Kokusho, Hidehiro Kaneda, Ryota Ito, Daichi Ishikawa
    Advances in Optical and Mechanical Technologies for Telescopes and Instrumentation IV, Dec 13, 2020  Corresponding author
  • 前嶋宏志, 松本光生, 平原靖大, 中川貴雄, 和田武彦, 長勢晃一, 大藪進喜, 鈴木仁研, 國生拓摩, 金田英宏, 金田英宏, 伊藤良太, 石川大智
    日本天文学会年会講演予稿集, 2020, 2020  
  • 石丸貴博, 和田武彦, 金田英宏, 鈴木仁研, 長勢晃一, 池田博一, 磯部直樹, 山本啓太, 馬場俊介, 大薮進喜, 渡部豊喜, 花岡美咲, 志知和幸, 前田浩希, 齋藤太志, 新井康夫, 渡辺健太郎, 中屋秀彦, 宮地晃平, 大野守史
    宇宙科学技術連合講演会講演集(CD-ROM), 62nd, 2018  
  • 公地千尋, 公地千尋, 和田武彦, 長勢晃一, 山本啓太, 馬場俊介, 馬場俊介, 金田英宏, 服部和生, 田中琴未, 花岡美咲, 鵜飼壮太, 鈴木仁研, 渡辺健太郎
    日本天文学会年会講演予稿集, 2015, 2015  
  • 花岡美咲, 金田英宏, 大薮進喜, 服部和生, 田中琴未, 鵜飼壮太, 和田武彦, 鈴木仁研, 渡辺健太郎, 長勢晃一, 長勢晃一, 公地千尋, 馬場俊介
    日本天文学会年会講演予稿集, 2015, 2015  
  • 田中琴未, 金田英宏, 大薮進喜, 服部和生, 木幡洸大, 花岡美咲, 和田武彦, 鈴木仁研, 渡辺健太郎, 長勢晃一, 長勢晃一, 公地千尋, 馬場俊介
    日本天文学会年会講演予稿集, 2014, 2014  
  • KANEDA Hidehiro, ISHIHARA Daisuke, ONAKA Takashi, SUZUKI Toyoaki, MORI Tatsuya, OYABU Shinki, YAMAGISHI Mitsuyoshi
    Publications of the Astronomical Society of Japan, 63(3) 601-615, Jun 25, 2011  
  • D. Ishihara, H. Kaneda, A. Furuzawa, H. Kunieda, T. Suzuki, B-C. Koo, H-G. Lee, J-J. Lee, T. Onaka
    ASTRONOMY & ASTROPHYSICS, 521 L61, Oct, 2010  
    Aims. We investigate the spatial distribution of dust emission around Tycho's SNR to understand its origin. We distinguish the dust associated with the SNR from that of the surrounding ISM. Methods. We performed mid- to far-infrared imaging observations of the remnant at wavelengths of 9, 15, 18, 24, 65, 90, 140, and 160 mu m using the Infrared Camera and the Far-Infrared Surveyor onboard AKARI. We compared the AKARI images with the Suzaku X-ray image and the (CO)-C-12 image of Tycho's SNR. Results. All the AKARI images except the 9, 140, and 160 mu m band images show a shell-like emission structure with brightness peaks at the northeast (NE) and northwest (NW) boundaries, sharply outlining part of the X-ray shell. The 140 and 160 mu m bands are dominated by cold dust emission from the surrounding ISM near the NE boundary. Conclusions. We conclude that the dust emission at the NE boundary comes from the ambient cloud interacting with the shock front, while the origin of the dust emission at the NW boundary is rather unclear because of the absence of prominent interstellar clouds near the corresponding region. We cannot rule out the possibility that the latter is mostly of an SN ejecta origin.
  • YAMAGISHI Mitsuyoshi, KANEDA Hidehiro, ISHIHARA Daisuke, KOMUGI Shinya, SUZUKI Toyoaki, ONAKA Takashi
    Publications of the Astronomical Society of Japan, 62(4) 1085-1092, Aug 25, 2010  
  • H. Kaneda, D. Ishihara, T. Suzuki, N. Ikeda, T. Onaka, M. Yamagishi, Y. Ohyama, T. Wada, A. Yasuda
    ASTRONOMY & ASTROPHYSICS, 514 A14, May, 2010  
    Context. The edge-on starburst galaxy M 82 exhibits complicated distributions of gaseous materials in its halo, which include ionized superwinds driven by nuclear starbursts, neutral materials entrained by the superwinds, and large-scale neutral streamers probably caused by a past tidal interaction with M 81. Aims. We investigate detailed distributions of dust grains and polycyclic aromatic hydrocarbons (PAHs) around M 82 to understand their interplay with the gaseous components. Methods. We performed mid- (MIR) and far-infrared (FIR) observations of M 82 with the infrared camera (IRC) and far-infrared surveyor (FIS) onboard AKARI. Results. We obtained new MIR and FIR images of M 82, which reveal both faint extended emission in the halo and very bright emission in the center with signal dynamic ranges as broad as five orders of magnitude for the MIR and three for FIR, respectively. We detected MIR and FIR emission in the regions far away from the disk of the galaxy, reflecting the dust and PAHs in the halo of M 82. Conclusions. We find that the dust and PAHs are contained in both ionized and neutral gas components, implying that they have been expelled into the halo of M 82 by both starbursts and galaxy interaction. In particular, we obtain a tight correlation between the PAH and Ha emission, which provides evidence that the PAHs are well mixed in the ionized superwind gas and flowing out from the disk.
  • H. Kaneda, T. Onaka, I. Sakon, T. Kitayama, Y. Okada, T. Suzuki, D. Ishihara, M. Yamagishi
    The Astrophysical Journal, 716(2,Pt.2) L161-L165, 2010  
    201
  • KANEDA Hidehiro, SUZUKI Toyoaki
    The astronomical herald, 102(12) 734-739, Nov 20, 2009  
  • Hidehiro Kaneda, Mitsuyoshi Yamagishi, Toyoaki Suzuki, Takashi Onaka
    ASTROPHYSICAL JOURNAL LETTERS, 698(2) L125-L128, Jun, 2009  
    We present new far-infrared (FIR) images of the edge-on starburst galaxy NGC 253 obtained with the Far-Infrared Surveyor (FIS) onboard AKARI at wavelengths of 90 mu m and 140 mu m. We have clearly detected FIR dust emission extended in the halo of the galaxy; there are two filamentary emission structures extending from the galactic disk up to 9 kpc in the northern and 6 kpc in the northwestern direction. From its spatial coincidence with the X-ray plasma outflow, the extended FIR emission is very likely to represent outflowing dust entrained by superwinds. The ratios of surface brightness at 90 mu m to that at 140 mu m suggest that the temperatures of the dust in the halo are getting higher in the regions far from the disk, implying that there exist extra dust heating sources in the halo of the galaxy.
  • Kaneda Hidehiro
    Meeting abstracts of the Physical Society of Japan, 64(1) 216-216, Mar 3, 2009  
  • Hirashita H., Kaneda H., Onaka T., Suzuki T., Ichikawa T. T.
    Meeting abstracts of the Physical Society of Japan, 64(1) 217-217, Mar 3, 2009  
  • 和田健介, 和田武彦, 鈴木仁研, 渡辺健太郎, 金田英宏, 廣瀬和之, 松原英雄, 中川貴雄, 村上浩, 片坐宏一
    日本天文学会年会講演予稿集, 2009, 2009  
  • KANEDA Hidehiro, SUZUKI Toyoaki, ONAKA Takashi, OKADA Yoko, SAKON Itsuki
    Publications of the Astronomical Society of Japan, 60(2) S467-S475, Dec 25, 2008  
  • HIRASHITA Hiroyuki, KANEDA Hidehiro, ONAKA Takashi, SUZUKI Toyoaki
    Publications of the Astronomical Society of Japan, 60(2) S477-S488, Dec 25, 2008  
  • 上野宗孝, 河村晶子, 大西利和, 深川美里, 北村良実, 池田紀夫, 金田英宏, 鈴木仁研, 片坐宏一, 瀧田怜, 砂田和良, 田村元秀, 神鳥亮, 石原大助, KUN Maria, TOTH Viktor L., WHITE Glenn
    日本天文学会年会講演予稿集, 2008, 2008  
  • 金田英宏, 鈴木仁研, 巻内慎一郎, 岡田陽子, 中川貴雄, 尾中敬, 土井靖生, 左近樹, 平下博之, 田中昌宏
    日本天文学会年会講演予稿集, 2008, 2008  
  • 鈴木仁研, 永田洋久, 和田武彦, 金田英宏, 渡辺健太郎, 廣瀬和之, 中川貴雄, 村上浩, 松原英雄, 片坐宏一, 丹下勉
    日本天文学会年会講演予稿集, 2007, 2007  
  • 鈴木仁研, 渡辺健太郎, 和田武彦, 金田英宏, 廣瀬和之, 中川貴雄, 村上浩, 松原英雄, 片坐宏一, 永瀬武士, 石垣美穂, 丹下勉
    日本天文学会年会講演予稿集, 2006, 2006  
  • 金田英宏, 中川貴雄, 松浦周二, 高島健, 白旗麻衣, 鈴木仁研, 尾中敬, 土井靖生, 平尾孝憲, 日比康詞, 五十部優, 内堀幸夫, 北村尚
    日本天文学会年会講演予稿集, 2004, 2004  

Presentations

 43

Professional Memberships

 1

Research Projects

 9