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技術資料
論文速報|101 km・60秒!聯河光子×上海交通大学、FFT-Simplex方式で高速・長距離BOTDRの限界を突破 | アイカワフォトニクス株式会社
Yang Zhang, Jiageng Chen, Hanzhao Li, Xuhui Yu, Zuyuan He "FFT-based signal processing for high-speed long-range Brillouin optical time-domain reflectometry, " Chinese Optics Letters, Vol.24, No.5, May 2026. DOI: 10.3788/COL202624.051201 -
技術資料
論文速報|聯河光子×上海交通大学の産学連携成果がJLTに掲載、幾何学誘起機械コンプライアンスに基づく超高感度光ファイバーマイクロホンを実現 | アイカワフォトニクス株式会社
Xuzhe Zhang, Yuan Gao, Huanmo Zhou, Yangyang Wan, Xuhui Yu, Zuyuan He. “Ultra-High Sensitivity Fiber Optic Microphone Based on Geometry-Induced Mechanical Compliance, ” Journal of Lightwave Technology, Vol.44, No.12, June 15, 2026. DOI: 10.1109/JLT.2026.3681266 -
技術資料
聯河光子 × 上海交通大学|OFC 2026 でDASに関する2つの重要成果を連続発表、産学連携で光ファイバセンシングの最前線をリード
OFC(Optical Fiber Communication Conference) は、世界の光通信分野における「風向計」と称され、最も権威と影響力を持つトップ学術会議であり、光通信および関連技術の最高水準と将来のトレンドを示す。 OFC 2026において、寧波聯河光子技術有限公司は... -
技術資料
Single-end hybrid Rayleigh Brillouin and Raman distributed fibre-optic sensing system (light-am.com)
Linjing Huang, Xinyu Fan, Haijun He, Lianshan Yan, and Zuyuan He, “Single-end hybrid Rayleigh Brillouin and Raman distributed fibre-optic sensing system,” Light: Advanced Manufacturing, Vol. 4, No. 16, Jul. 2023 -
技術資料
Optical frequency domain reflectometry with broadened frequency sweep range assisted by a dual electro-optic frequency comb
Yidai Zhu, Xinyu Fan, Zhaopeng Zhang, Zhengchao Yuan, Bingxin Xu, and Zuyuan He, “Optical frequency domain reflectometry with broadened frequency sweep range assisted by a dual electro-optic frequency comb,” Optics Letters, Vol. 48, No. 19, pp. 4937-4940, Sep. 2023 -
技術資料
Hybrid Distributed Fiber-Optic Sensing System by Using Rayleigh Backscattering Lightwave as Probe of Stimulated Brillouin Scattering | IEEE Journals & Magazine | IEEE Xplore
Linjing Huang, Xinyu Fan, and Zuyuan He, “Hybrid distributed fiber-optic sensing system by using Rayleigh backscattering lightwave as probe of stimulated Brillouin scattering,” Journal of Lightwave Technology, Oct. 2022 -
技術資料
Optical Fiber Distributed Acoustic Sensors: A Review | IEEE Journals & Magazine | IEEE Xplore
Zuyuan He, Qingwen Liu, “Optical fiber distributed acoustic sensors: a review,” Journal of Lightwave Technology, Vol. 39, No. 12, pp. 3671 – 3686, Jun. 2021 (Invited Tutorial Review) -
技術資料
Long-range distributed vibration sensing using phase-sensitive forward optical transmission
Zhaopeng Zhang, Xinyu Fan, and Zuyuan He, “Long-range and wide-band vibration sensing by using phase-sensitive OFDR to interrogate a weak reflector array,” Optics Express, Vol. 28, No. 12, pp. 18387-18396, Jun. 2020 -
技術資料
Large-scale multiplexed weak reflector array fabricated with a femtosecond laser for a fiber-optic quasi-distributed acoustic sensing system (optica.org)
Mengshi Wu, Chi Li, Xinyu Fan, Changrui Liao, and Zuyuan He, “Large-scale multiplexed weak reflector array for fiber optic distributed acoustic sensor system,” Optics Letters, Vol. 45, No. 13, pp. 3685-3688, Jul. 2020 -
技術資料
Dynamic Strain Measurements Based on High-Speed Single-End-Access Brillouin Optical Correlation Domain Analysis | IEEE Journals & Magazine | IEEE Xplore
Bin Wang, Xinyu Fan*, Yuanxiu Fu, and Zuyuan He, “Dynamic strain measurements based on high-speed single-end-access Brillouin optical correlation domain analysis,” OSA/IEEE Journal of Lightwave Technology, Vol. 37, No. 11, pp. 2557-2567, 2019 -
技術資料
Feedforward Laser Linewidth Narrowing Scheme Using Acousto-Optic Frequency Shifter and Direct Digital Synthesizer | IEEE Journals & Magazine | IEEE Xplore
Jiageng Chen, Qingwen Liu, and Zuyuan He, “Feedforward laser linewidth narrowing scheme using acousto-optic frequency shifter and direct digital synthesizer,” IEEE/OSA Journal of Lightwave Technology, Vol. 37, No. 18, pp. 4657 – 4664, Sep. 2019 -
技術資料
Distributed Dynamic Strain Measurement Based on Dual-Slope-Assisted Brillouin Optical Correlation Domain Analysis | IEEE Journals & Magazine | IEEE Xplore
Bin Wang, Xinyu Fan, Yuanxiu Fu, Zuyuan He, “Distributed dynamic strain measurement based on dual-slope-assisted Brillouin optical correlation domain analysis,” Journal of Lightwave Technology, Vol. 37, No. 18, pp. 4573 – 4583, Sep. 2019


