DNAkamura 中村大輔
理化学研究所 創発物性科学研究センター 強相関物質研究グループ 研究員
Daisuke NAKAMURA, Researcher

Tel: 048-462-1111 (内線6035)
居室:理化学研究所 創発物性科学研究センター フロンティア中央研究棟(C41) 204号室
E-mail:  daisuke.nakamura.rg(at-mark)riken.jp
(2021.04.05 updated)

 -- 業績等登録データベース --

researchmap: 中村大輔個人ページ
科学研究費助成事業データベース(KAKEN): 中村大輔個人ページ
ORCiD: 0000-0003-3799-6801
Web of Science ResearcherID: AAN-1042-2020

 -- 略歴 --

2002年 3月   神奈川県立厚木高等学校 卒業
2002年 4月   東京大学 理科一類 入学
2006年 3月   東京大学 教養学部基礎科学科 卒業
2008年 3月   東京大学大学院修士課程 総合文化研究科広域科学専攻 修了(前田京剛 研究室)
2008年 4月   日本学術振興会 特別研究員(DC1, ~2011年 3月)
2011年 3月   東京大学大学院博士課程 総合文化研究科広域科学専攻 修了(博士(学術)取得, 前田京剛 研究室)

2011年 4月~2021年 3月 東京大学物性研究所 国際超強磁場科学研究施設 助教
(2011-2019: 嶽山正二郎研究室、2020-2021: 松田康弘研究室)
2021年 4月〜   理化学研究所 創発物性科学研究センター 強相関物質研究グループ(主宰:田口康二郎グループリーダー) 研究員

-- 現在までの研究内容 --

-- 投稿論文 --

  1. “Magnetic-field-induced insulator–metal transition in W-doped VO2 at 500 T”
    Y. Matsuda, D. Nakamura, A. Ikeda, S. Takeyama, Y. Suga, H. Nakahara, and Y. Muraoka
    Nat. Commun. vol.11, p.3591 (2020).

  2. “Magnetization plateau observed by ultrahigh-field Faraday rotation in the kagome antiferromagnet herbertsmithite”
    R. Okuma, D. Nakamura, and S. Takeyama
    Phys. Rev. B vol.102, p.104429 (2020).

  3. “Quantum limit cyclotron resonance in monolayer epitaxial graphene in magnetic fields up to 560 T: The relativistic electron and hole asymmetry”
    D. Nakamura, H. Saito, H. Hibino, K. Asano and S. Takeyama
    Phys. Rev. B, vol.101, p.115420 (2020). editor’s suggestion

  4. “Pauli-limit upper critical field of high-temperature superconductor La1.84Sr0.16CuO4
    D. Nakamura, T. Adachi, K. Omori, Y. Koike, S. Takeyama
    Sci. Rep. vol.9, p.16949 (2019).

  5. “Observation of a metamagnetic transition in the 5f heavy-fermion compound UNi2Al3: Magnetization studies up to 90 T for single-crystalline U(Pd1-xNix)2Al3
    K. Mochidzuki, Y. Shimizu, A. Kondo, A. Matsuo, D. Li, D. Aoki, Y. Homma, F. Honda, J. Flouquet, D. Nakamura, S. Takeyama, and K. Kindo
    Phys. Rev. B vol.100, p.165137 (2019).

  6. “A series of magnon crystals appearing under ultrahigh magnetic fields in a kagomé antiferromagnet”
    R. Okuma, D. Nakamura, T. Okubo, A. Miyake, A. Matsuo, K. Kindo, M. Tokunaga, N. Kawashima, S. Takeyama, Z. Hiroi
    Nat. Commun. vol.10, p.1229 (2019).

  7. “Ultra-high magnetic field magnetic phases up to 130 T in a breathing pyrochlore LiInCr4O8
    M. Gen, D. Nakamura, Y. Okamoto, S. Takeyama
    J. Magn. Magn. Mat. vol.473, pp.387-393 (2019).

  8. “Ultrahigh-Magnetic-Field magnetization of Multi-Kagome-Strip (MKS) Lattice Spin-Frustrated Magnet, K2Mn3(OH)2(VO4)2
    D. Otsuka, H. Sato, A. Matsuo, K. Kindo, D. Nakamura, S. Takeyama
    J. Phys. Soc. Jpn. vol.87, p.124701 (2018).

  9. “Record indoor magnetic field of 1200 T generated by electromagnetic flux-compression”
    D. Nakamura, A. Ikeda, H. Sawabe, Y. H. Matsuda, and S. Takeyama
    Rev. Sci. Instrum. vol.89, p.095106 (2018). selected as Scilight

  10. “Extremely wide 1/3 magnetic plateau of volborthite Cu3V2O7(OH)2·2H2O in ultrahigh magnetic fields up to 182 T”
    D. Nakamura, T. Yamashita, H. Ishikawa, Z. Hiroi, and S. Takeyama
    Phys. Rev. B vol.98, p.020404(R) (2018).

  11. “Radio frequency self-resonant coil for contactless AC-conductivity in 100 T class ultra-strong pulse magnetic fields”
    D. Nakamura, M. M. Altarawneh, and S. Takeyama
    Meas. Sci. Technol. vol.29, p.035901 (2018).

  12. “Note: An approach to 1000 T using the electro-magnetic flux compression”
    D. Nakamura, H. Sawabe, and S. Takeyama
    Rev. Sci. Instrum. vol.89, p.016106 (2018). Editor’s pick

  13. “Ultrahigh magnetic field phases in the frustrated triangular-lattice magnet CuCrO2
    A. Miyata, O. Portugall, D. Nakamura, K. Ohgushi, and S. Takeyama
    Phys. Rev. B vol.96, p.180401(R) (2017).

  14. “Magnetic Transitions under Ultrahigh Magnetic Fields of up to 130 T in the Breathing Pyrochlore Antiferromagnet LiInCr4O8
    Y. Okamoto, D. Nakamura, A. Miyake, S. Takeyama, M. Tokunaga, A. Matsuo, K. Kindo, and Z. Hiroi
    Phys. Rev. B vol.95, p.134438 (2017).

  15. “Anomalous diamagnetic shifts in InP-GaP lateral quantum-wires”
    Y. H. Shin, B. K. Choi, Y. Kim, J. D. Song, D. Nakamura, Y. H. Matsuda, and S. Takeyama
    Optics Express, vol.23, p.247155 (2015).

  16. “Effect of very high magnetic field on the optical properties of firefly light emitter oxyluciferin”
    W. Zhou, D. Nakamura, Y. Wang, T. Mochizuki, H. Akiyama, and S. Takeyama
    J. Luminescence vol.165, pp.15-19 (2015).

  17. “Exciton splitting in semiconducting carbon nanotubes in ultrahigh magnetic fields above 300 T”
    D. Nakamura, T. Sasaki, W. Zhou, H. Liu, H. Kataura, and S. Takeyama
    Phys. Rev. B vol.91, p.235427 (2015).

  18. “Magnetic-Field-Induced Insulator-Metal Transition in (Pr1-yYy)0.7Ca0.3CoO3 at Ultrahigh Magnetic Fields”
    S. Lee, Y. H. Matsuda, T. Naito, D. Nakamura, and S. Takeyama
    J. Phys. Soc. Jpn. vol.84, p.044703 (2015).

  19. “Relative Ordering between Bright and Dark Excitons in Single-walled Carbon Nanotubes”
    W. Zhou, D. Nakamura, H. Liu, H. Kataura, and S. Takeyama
    Sci. Rep. vol.4, p.6999 (2014).

  20. “Optical Detection of Magnetic Orders in HgCr2O4 Frustrated Spin Magnet under Pulsed High Magnetic Fields”
    D. Nakamura, A. Miyata, Y. Aida, H. Ueda, and S. Takeyama
    J. Phys. Soc. Jpn. vol.83, p.113703 (2014).

  21. “Optical anisotropy and diamagnetic energy shifts in InP–GaP lateral quantum wells”
    Y. H. Shin, Y. Kim, J. D. Song, Y. T. Lee, H. Saito, D. Nakamura, Y. H. Matsuda, and S. Takeyama
    J. Luminescence vol.151, pp.244-246 (2014).

  22. “Note: Experimental evidence of three-dimensional dynamics of an electromagnetically imploded liner”
    D. Nakamura, H. Sawabe and S. Takeyama
    Rev. Sci. Instrum. vol.85, p.036102 (2014).

  23. “Survey of exciton-phonon sidebands by magneto-optical spectroscopy using highly specified (6,5) single-walled carbon nanotubes”
    W. Zhou, T. Sasaki, D. Nakamura, H. Saito, H. Liu, H. Kataura and S. Takeyama
    Appl. Phys. Lett. vol.103, p.021117 1-4 (2013).

  24. “Exciton-phonon bound complex in single-walled carbon nanotubes revealed by high-field magneto-optical spectroscopy”
    W. Zhou, T. Sasaki, D. Nakamura, H. Saito, H. Liu, H. Kataura, and S. Takeyama
    Appl. Phys. Lett. vol.103, p.233101 (2013).

  25. ”Band-edge exciton states in a single-walled carbon nanotube revealed by magneto-optical spectroscopy in ultrahigh magnetic fields”
    W. Zhou, T. Sasaki, D. Nakamura, H. Liu, H. Kataura, and S. Takeyama
    Phys. Rev. B vol.87, p.241406(R) (2013).

  26. “Precise Evaluation of the Ultra-high Magnetic Field Generated by the Electro-Magnetic Flux Compression Method”
    D. Nakamura, H. Sawabe, Y. H. Matsuda and S. Takeyama
    Rev. Sci. Instrum. vol.84, p.044702 (2013).

  27. “Ultralow-Dissipative Conductivity by Dirac Fermions in BaFe2As2
    Y. Imai, F. Nabeshima, D. Nakamura, T. Katase, H. Hiramatsu, H. Hosono, and A. Maeda
    J. Phys. Soc. Jpn., vol.82, p.043709 (2013).

  28. “Superconducting Fluctuation Investigated by THz Conductivity of La2-xSrxCuO4 Thin Films”
    D. Nakamura, Y. Imai, A. Maeda and I. Tsukada
    J. Phys. Soc. Jpn., vol.81, p.044709 (2012).

  29. “Static friction as a function of waiting time probed by dynamics of driven vortices in La2-xSrxCuO4 thin films”
    D. Nakamura, T. Kubo, S. Kitamura and A. Maeda
    J. Phys.: Condens. Matter, vol.22, p.445702 (2010). IOP select

-- 研究資金、賞など獲得状況 --

-- 学位論文題目 --


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