Rchr
J-GLOBAL ID:200901000679736815   Update date: Nov. 12, 2023

Nakamoto Taishi

ナカモト タイシ | Nakamoto Taishi
Affiliation and department:
Job title: Professor
Research field  (1): Astronomy
Research keywords  (2): Star and Planetary System Formation ,  Meteorite Formation
Research theme for competitive and other funds  (28):
  • 2023 - 2027 Meteoritic and theoretical studies on the origin of isotopic dichotomy in meteorites
  • 2022 - 2025 Simultaneous Formation of Planetesimals and Chondrules: Lightning Model
  • 2018 - 2023 コンドリュール形成:新しい雷モデルの可能性
  • 2016 - 2019 Decoding the origin of solar system from the isotope anomalies of heavy elements in meteorites
  • 2015 - 2019 Study of Shock Wave Heating Chondrule Formation Model: Bow-Shocks in Dust-Rich Regions
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Papers (54):
  • Sota Arakawa, Daiki Yamamoto, Takayuki Ushikubo, Hiroaki Kaneko, Hidekazu Tanaka, Shigenobu Hirose, Taishi Nakamoto. Oxygen isotope exchange between molten silicate spherules and ambient water vapor with nonzero relative velocity: Implication for chondrule formation environment. ICARUS. 2023. 405
  • Sota Arakawa, Satoshi Okuzumi, Misako Tatsuuma, Hidekazu Tanaka, Eiichiro Kokubo, Daisuke Nishiura, Mikito Furuichi, Taishi Nakamoto. Size Dependence of the Bouncing Barrier in Protoplanetary Dust Growth. The Astrophysical Journal Letters. 2023. 951. 1. L16-L16
  • Hiroaki Kaneko, Kento Sato, Chihiro Ikeda, Taishi Nakamoto. Cooling Rates of Chondrules after Lightning Discharge in Solid-rich Environments. The Astrophysical Journal. 2023. 947. 1
  • Sota Arakawa, Taishi Nakamoto. Erratum: “Compound Chondrule Formation in Optically Thin Shock Waves” (2019, ApJ, 877, 84). The Astrophysical Journal. 2022. 935. 2
  • Hiroaki Kaneko, Sota Arakawa, Taishi Nakamoto. Dependence of the initial internal structure of chondrule rim on dust size distribution. Icarus. 2022. 374. 114726-114726
more...
MISC (23):
  • H. Nomura, A. Higuchi, N. Sakai, S. Yamamoto, M. Nagasawa, K. K. Tanaka, H. Miura, T. Nakamoto, H. Tanaka, T. Yamamoto, et al. ALMA observations of sulfur-bearing molecules in protoplanetary disks. Proceedings of the International Astronomical Union. 2020. 360-361
  • Kei E. I. Tanaka, Taishi Nakamoto. Radiation Pressure and Photoionization on Accretion Disks in Massive Star Formation. FIRST STARS IV - FROM HAYASHI TO THE FUTURE. 2012. 1480. 427-429
  • Kei Tanaka, Taishi Nakamoto. OMOSHI Effect : A New Mechanism for Mass Accretion under the Radiation Pressure in Massive Star Formation. EXOPLANETS AND DISKS: THEIR FORMATION AND DIVERSITY. 2009. 1158. 167-168
  • Hidenobu Yajima, Masayuki Umemura, Masao Mori, Taishi Nakamoto. Escape Fraction of Ionizing Photons from High-z Proto-Galaxy. PANORAMIC VIEWS OF GALAXY FORMATION AND EVOLUTION, PROCEEDINGS. 2008. 399. 70-+
  • 三浦 均, 中本 泰史, 土居 政雄. 原始太陽系における mm スケールの流体力学(乱流と輸送現象:コーヒーカップから宇宙まで). 数理解析研究所講究録. 2007. 1567. 47-55
more...
Books (2):
  • Star Formation 1999
    Nobeyama Radio Observatory 1999
  • 国際会議「Star Formation 1999」の集録「Star Formation 1999」の編集
    1999
Professional career (2):
  • 博士(理学) (東京大学)
  • 理学修士 (東京大学)
Association Membership(s) (4):
International Astronomical Union ,  Japanese Society for Planetary Science ,  Astronomical Society of Japan ,  Meteoritical Society
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