Rchr
J-GLOBAL ID:202401014509274157   Update date: Oct. 31, 2024

Asano Motoki

アサノ モトキ | Asano Motoki
Affiliation and department:
Job title: Associate distinguished researcher
Research field  (2): Semiconductors, optical and atomic physics ,  Optical engineering and photonics
Research keywords  (3): 共振器オプトメカニクス ,  ナノメカニクス ,  マグノメカニクス
Research theme for competitive and other funds  (2):
  • 2023 - 2028 Ultrahigh-speed magnophononic resonator devices
  • 2021 - 2024 微小球光キャビティとナノワイヤ振動子による巨視的フォノン量子もつれ状態の生成
Papers (10):
  • Ryoko Sakuma, Motoki Asano, Hiroshi Yamaguchi, Hajime Okamoto. Near-field optomechanical transduction enhanced by Raman gain. Optics Express. 2024
  • Motoki Asano, Hiroshi Yamaguchi, Hajime Okamoto. Fiber-type optomechanical array using high- Q microbottle resonators. Physical Review Applied. 2024
  • Hiroshi Yamaguchi, Daiki Hatanaka, Motoki Asano. Quadrature skyrmions in two-dimensionally arrayed parametric resonators. Physical Review Research. 2023
  • Motoki Asano, Hiroki Matsumoto, Masamitsu Hayashi, Daiki Hatanaka. Cavity magnomechanical coupling with coupled magnon modes in a synthetic antiferromagnet. Physical Review B. 2023
  • Daiki Hatanaka, Motoki Asano, Hajime Okamoto, Hiroshi Yamaguchi. Phononic Crystal Cavity Magnomechanics. Physical Review Applied. 2023
more...
MISC (15):
  • Motoki Asano, Hiroshi Yamaguchi, Hajime Okamoto. Cavity optomechanical liquid level meter using a twin-microbottle resonator. 2024
  • Hiroki Matsumoto, Isamu Yasuda, Motoki Asano, Takuya Kawada, Masashi Kawaguchi, Daiki Hatanaka, Masamitsu Hayashi. Magnon-phonon coupling of synthetic antiferromagnets in a surface acoustic wave cavity resonator. 2023
  • Samer Houri, Motoki Asano, Hajime Okamoto, Hiroshi Yamaguchi. A Kuramoto Network in a Single Nonlinear Microelectromechanical Device. 2022
  • Samer Houri, Motoki Asano, Hajime Okamoto, Hiroshi Yamaguchi. The Librator: A new dynamical regime for nonlinear microelectromechanical devices. 2021
  • Motoki Asano, Takuma Aihara, Tai Tsuchizawa, Hiroshi Yamaguchi. Non-equilibrium quadratic measurement-feedback squeezing in a micromechanical resonator. 2021
more...
Professional career (1):
  • Ph.D. in Engineering (Osaka University)
Association Membership(s) (2):
応用物理学会 ,  日本物理学会
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