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J-GLOBAL ID:201901013918504664   Update date: Jan. 30, 2024

Shioda Tatsutoshi

Shioda Tatsutoshi
Affiliation and department:
Research field  (1): Measurement engineering
Research theme for competitive and other funds  (19):
  • 2022 - 2024 光領域差動利得信号生成技術の開拓と半透明サンプルの高速低雑音計測への応用
  • 2021 - 2024 International collaborative research on highly sensitive fiber optic sensor for early detection of dielectric breakdown signs in power line
  • 2021 - 2024 Study of one-shot/long time range/ultrafast optical waveform measurement system using frequency domain optical correlation technique
  • 2020 - 2023 二光子吸収応答受光系を用いた多点光ファイバ型ベクトル曲げセンサ
  • 2017 - 2020 Study of a femtosecond single-shot transient absorption spectroscopy using discretely oscillating optical frequency comb
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Papers (117):
  • Samuel Choi, Takeru Ota, Fumiaki Nin, Tatsutoshi Shioda, Takamasa Suzuki, Hiroshi Hibino. Rapid optical tomographic vibrometry using a swept multi-gigahertz comb. Optics Express. 2021. 29. 11. 16749-16749
  • Nasrin Sultana, Hiroaki Tada, Hayate Imai, Tatsutoshi Shioda. Dispersion pre-compensation of 25.6 Tbps waveforms using an optical frequency comb synthesizer/analyzer. Optics Communications. 2020. 475
  • Hiroaki Tada, Leona Yuda, Nasrin Sultana, Hayate Imai, Tatsutoshi Shioda. Ultra-fast waveform measurement in single-shot using optical frequency comb analyzer. Optics InfoBase Conference Papers. 2020. Part F181-CLEO-AT 2020
  • Sultana Nasrin, Hiroaki Tada, Tatsutoshi Shioda. Scan-less dispersion spectroscopy with single-shot dual-heterodyne mixing and optical frequency comb. Optics InfoBase Conference Papers. 2020. Part F181-CLEO-AT 2020
  • Sultana Nasrin, Hiroaki Tada, Leona Yuda, Tatsutoshi Shioda. Dispersion spectroscopy with optical frequency comb-based single-shot dual-heterodyne mixing. Applied Optics. 2019. 58. 33. 9044-9050
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MISC (9):
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