Rchr
J-GLOBAL ID:201001007957388837   Update date: Nov. 19, 2024

Kodera Tetsuo

コデラ テツオ | Kodera Tetsuo
Affiliation and department:
Job title: Associate Professor
Research field  (1): Nanostructure physics
Research theme for competitive and other funds  (14):
  • 2023 - 2028 Exploring spin coherence engineering in group IV semiconductor quantum structures
  • 2023 - 2027 リコンフィギュアラブル量子極低温制御回路の創製
  • 2020 - 2024 単一飛行電子を用いた量子電子光学実験の基盤技術の開発
  • 2020 - 2023 Elucidation and control of hole spin dynamics in quantum structures
  • 2018 - 2020 Development and pioneering physics of devices with conduction carrier spins in diamond
Show all
Papers (89):
  • Junliang Wang, Hermann Edlbauer, Aymeric Richard, Shunsuke Ota, Wanki Park, Jeongmin Shim, Arne Ludwig, Andreas D. Wieck, Heung-Sun Sim, Matias Urdampilleta, et al. Coulomb-mediated antibunching of an electron pair surfing on sound. Nature Nanotechnology. 2023. 18. 7. 721-726
  • Takeru Utsugi, Noriyuki Lee, Ryuta Tsuchiya, Toshiyuki Mine, Raisei Mizokuchi, Jun Yoneda, Tetsuo Kodera, Shinichi Saito, Digh Hisamoto, Hiroyuki Mizuno. Single-electron pump in a quantum dot array for silicon quantum computers. Japanese Journal of Applied Physics. 2023
  • Masato Machida, Raisei Mizokuchi, Jun Yoneda, Takashi Tomura, Tetsuo Kodera. Mixed-mode RF reflectometry of quantum dots for reduction of crosstalk effects. Japanese Journal of Applied Physics. 2023. 62. {SC}
  • J. Kamioka, R. Matsuda, R. Mizokuchi, J. Yoneda, T. Kodera. Evaluation of a physically defined silicon quantum dot for design of matching circuit for RF reflectometry charge sensing. AIP Advances. 2023
  • Noriyuki Lee, Ryuta Tsuchiya, Yusuke Kanno, Toshiyuki Mine, Yoshitaka Sasago, Go Shinkai, Raisei Mizokuchi, Jun Yoneda, Tetsuo Kodera, Chihiro Yoshimura, et al. 16 x 8 quantum dot array operation at cryogenic temperatures. Japanese Journal of Applied Physics. 2022
more...
MISC (56):
  • 米田淳, 武田健太, 野入亮人, 中島峻, LI Sen, 神岡純, 小寺哲夫, 樽茶清悟. Quantum Non-demolition Readout of a Silicon Spin Qubit. 応用物理学会春季学術講演会講演予稿集(CD-ROM). 2023. 70th
  • 野入亮人, 武田健太, 米田淳, 中島峻, 小寺哲夫, 樽茶清悟. Fast charge sensing in accumulation mode silicon quantum dots with radio-frequency reflectometry. 日本物理学会講演概要集(CD-ROM). 2020. 75. 1
  • 米田淳, 米田淳, 武田健太, 野入亮人, 中島峻, LI Sen, 神岡純, 小寺哲夫, 樽茶清悟. Quantum non-demolition readout of an electron spin in a silicon quantum dot. 日本物理学会講演概要集(CD-ROM). 2020. 75. 2
  • 米田淳, 武田健太, 野入亮人, 中島峻, LI Sen, 小寺哲夫, 樽茶清悟. シリコン2重量子ドットにおける位相雑音の交差相関. 日本物理学会講演概要集(CD-ROM). 2019. 74. 1
  • 米田淳, 武田健太, 野入亮人, 中島峻, 大塚朋廣, LI Sen, 小寺哲夫, 樽茶清悟. シリコン量子ドットにおける2スピン同時検出. 日本物理学会講演概要集(CD-ROM). 2018. 73. 1
more...
Lectures and oral presentations  (26):
  • Inelastic single-electron tunneling assisted by confined phonons observed for suspended silicon double quantum dots
    (QDCAM2010 2010)
  • Pauli Spin Blockade in a Lithographycally-defined Silicon Double Quantum Dot
    (QNSP2010 2010)
  • Magnetic field dependence of resonant tunnelling between an InAs quantum dot and an InGaAs quantum dot
    (QNSP2010 2010)
  • Pauli spin blockade in a lithographically-defined silicon double quantum dot
    (International Symposium on Quantum Nanostructures and Spin-related Phenomena 2010)
  • Magnetic field dependence of resonant tunneling between an InAs quantum dot and an InGaAs quantum dot
    (International Symposium on Quantum Nanostructures and Spin-related Phenomena 2010)
more...
Education (2):
  • - 2007 The University of Tokyo Graduate School, Division of Science Department of Physics
  • - 2007 The University of Tokyo
Work history (4):
  • 2007 - 2009 :the University of Tokyo Institute for Nano Quantum Information Electronics Research Associate
  • 2007 - 2009 :東京大学 ナノ量子情報エレクトロニクス研究機構 特任助教
  • 2009 - -:Tokyo Institute of Technoloby Quantum Nanoelectronics Research Center Assistant Professor
  • 2009 - -:東京工業大学 量子ナノエレクトロニクス研究センター 助教
Association Membership(s) (4):
The Physical Society of Japan ,  the Japan Society of Applied Physics ,  日本物理学会 ,  応用物理学会
※ Researcher’s information displayed in J-GLOBAL is based on the information registered in researchmap. For details, see here.

Return to Previous Page