杨帆 研究员、博士生导师
中国科学院上海光学精密机械研究所
电子邮件: yang@siom.ac.cn
通信地址: 中国科学院上海光学精密机械研究所
研究领域
杨帆,中国科学院上海光机所研究员、博士生导师,国家海外优青。先后于华中科技大学、香港理工大学、瑞士洛桑联邦理工学院(EPFL)及欧洲分子生物学实验室(EMBL)学习与工作,长期从事布里渊散射与生物力学显微成像研究。围绕生物组织和细胞力学特性的高分辨率、快速检测需求,研制出国际首台兼具亚微米空间分辨率和亚毫秒时间分辨率的高时空分辨布里渊显微镜,实现了生物力学三维高分辨成像的重要突破。相关成果以通讯作者(含共同通讯)发表于 Nature Photonics(2025、2020)、Nature Methods、Nature Communications、Light: Science & Applications 等期刊,为生命科学和医学研究提供了全新的无标记力学表征工具。研究成果被《科技日报》、《中国科学报》、央视新闻、中科院之声、Science Daily、EurekAlert! 等十余家国内外媒体报道。研究成果入选"中国光学十大进展"(2025),并两度入选美国光学学会全球光学重要进展(2025、2020)。
课题组长期招收博士后、博士研究生和硕士研究生,欢迎具有光学、生物医学工程、物理、电子信息等相关背景的优秀青年加盟。
代表作(#共同一作,*通讯作者):
After joining SIOM (2023-now)
7. M. Xu, Z. Du, Y. Qi, J. Zhang, S. Yao, R. Prevedel, and F. Yang*, “Impact of refractive index heterogeneity on stimulated Brillouin scattering microscopy: a quantitative analysis,” Optics Letters 51, 1856-1859 (2026).
6. S. Jin#, S. Yao#, Z. Yang*, Z. Du, X. Hong, M.A. Soto, J. Xie, L. Zhang, F. Yang*, J. Wu, “A Framework for Spontaneous Brillouin Noise: Unveiling Fundamental Limits in Brillouin Metrology,” Light: Science&Applications 15, 44 (2026).
5. Y. Qi, S. Yao, Z.X. Du, J.R. Zhang, C. Zhou, X. Fu, H. Li, T. Mi, Y.H. Chen, Y.F. Wang, Y. Luo, X. He, J. Nan, Y. Zhang, L. Sun, P. Xia, S.Q. Cai, J.L. Du, J. Xie, W.B. Chen*, F. Yang*, “Stimulated Brillouin scattering microscopy with a high-peak-power 780 nm pulsed laser system,” Nature Photonics 19, 879-887 (2025).
4. F. Yang*, C. Bevilacqua, S. Hambura, A. Neves, A. Gopalan, K. Watanabe, M. Govendir, M. Bernabeu, J. Ellenberg, A. Diz-Muñoz, S. Köhler, G. Rapti, M. Jechlinger, R. Prevedel*, “Pulsed stimulated Brillouin microscopy enables high-sensitivity mechanical imaging of live and fragile biological specimens,” Nature Methods 20, 1971-1979 (2023).
3. X. Huang, A. Wang, Y. Qi, F. Yang, “Brillouin scattering in hollow-core fibers filled with mixed gas,” Optics Letters 50, 3875-3878 (2025).
2. X. Huang, Y. Qi, M. Pang, F. Yang, “Effect of temperature on Brillouin scattering in gas-filled hollow-core fibers,” Optics Letters 50, 1536-1539 (2025).
1. Y. Bo, S. Yao, Y. Qi, F. Yang, “Angle dependence of Brillouin scattering intensity in liquids,” Optics Letters 50, 2002-2505 (2025).
Before joining SIOM (before 2023)
11. F. Yang#*, F. Gyger#, L. Thévenaz*, “Intense Brillouin amplification in gas using hollow-core waveguides,” Nature Photonics 14, 700-708 (2020).
10. F. Yang*, F. Gyger, A. Godet, J. Chretien, L. Zhang, M. Pang, J.-C. Beugnot*, L. Thévenaz, “Large evanescently-induced Brillouin scattering at the surrounding of a nanofibre,” Nature Communications 13, 1432 (2022).
9. F. Gyger#, J. Liu#, F. Yang#, J. He, A. Raja, R. N. Wang, S. A. Bhave, T. J. Kippenberg*, L. Thévenaz*, “Observation of stimulated Brillouin scattering in silicon nitride integrated waveguides,” Physical Review Letters 124, 013902 (2020).
8. W. Jin#*, Y. Cao#, F. Yang#, H. L. Ho, “Ultra-sensitive all-fibre photothermal spectroscopy with large dynamic range,” Nature Communications 6, 6767 (2015).
7. D. Grassani, E. Tagkoudi, H. Guo, C. Herkommer, F. Yang, T. J. Kippenberg, C. S. Bres, “Mid infrared gas spectroscopy using efficient fiber laser driven photonic chip-based supercontinuum,” Nature Communications, 10, 1553 (2019).
6. H. Guo, W. Weng, J. Liu, F. Yang, W. Hansel, C. S. Bres, L. Thévenaz, R. Holzwarth, T. J. Kippenberg, “Nanophotonic supercontinuum based mid-infrared dual-comb spectroscopy,” Optica 7, 1181-1188 (2020).
5. F. Yang, W. Jin, Y. Cao, H. L. Ho, Y. Wang, “Towards high sensitivity gas detection with hollow-core photonic bandgap fibers,” Optics Express 22, 24894-24907 (2014).
4. F. Yang, Y. Tan, W. Jin, Y. Lin, Y. Qi, H. L. Ho, “Hollow-core fiber Fabry-Perot photothermal gas sensor,” Optics Letters 41, 3025-3028 (2016).
3. F. Yang, W. Jin, Y. Lin, C. Wang, H. L. Ho, Y. Tan, “Hollow-core microstructured optical fiber gas sensors,” IEEE Journal of Lightwave Technology 35, 3413-3424 (2017).
2. F. Yang*, Y. Zhao*, Y. Qi, Y. Tan, H. L. Ho, W. Jin, “Towards label-free distributed fiber hydrogen sensor with stimulated Raman spectroscopy,” Optics Express 27, 12869-12882 (2019).
1. F. Yang, W. Jin, H. L. Ho, F. Wang, W. Liu, L. Ma, Y. Hu, “Enhancement of acoustic sensitivity of hollow-core photonic bandgap fibers,” Optics Express 21, 15514-15521 (2013).
招生信息
招生研究方向:
布里渊显微成像;光学显微成像;布里渊散射;光纤智能感知
教育背景
工作经历
2020-09~2023-01,德国欧洲分子生物学实验室, 博士后
2017-07~2020-07,瑞士洛桑联邦理工学院, 博士后
2015-10~2017-06,香港理工大学, 研究助理
代表性论文
(1) Pulsed stimulated Brillouin microscopy enables high-sensitivity mechanical imaging of live and fragile biological specimens, Nature Methods, 2023, 一作兼通讯
(2) Intense Brillouin amplification in gas using hollow-core waveguides, Nature Photonics, 2020, 一作兼通讯
(3) Large evanescently-induced Brillouin scattering at the surrounding of a nanofibre, Nature Communications, 2022, 一作兼通讯
(4) Ultra-sensitive all-fibre photothermal spectroscopy with large dynamic range, Nature Communications, 2015, 共同一作
(5) Observation of Stimulated Brillouin Scattering in Silicon Nitride Integrated Waveguides., Physical Review Letters, 2020, 共同一作
(6) Nanophotonic supercontinuum-based mid-infrared dual-comb spectroscopy, Optica, 2020, 第 4 作者
(7) Mid infrared gas spectroscopy using efficient fiber laser driven photonic chip-based supercontinuum, Nature Communications, 2019, 第 5 作者