▪ 中国科学院上海光学精密机械研究所,强场激光物理国家重点实验室,中国上海
▪ 中国科学院上海光学精密机械研究所,激光新技术创新与集成中心,中国上海
▪ 中国科学院大学杭州高等研究院,物理与光电工程学院,中国杭州
▪ 中国科学技术大学,光学与光学工程系,中国合肥
教育经历
▪ 2000-2004年,天津大学,光电子学学士学位
▪ 2004-2007年,清华大学,物理电子学硕士
▪ 2007-2011,香港理工大学,光学博士
简介:庞盟,1983年生,2011年毕业于香港理工大学,获博士学位,后在加拿大渥太华大学鲍晓毅教授团队担任博士后。2013年至2019年期间,他在德国马克斯•普朗克光科学研究所(MPL)担任罗素部门的博士后和团队负责人。2019年,他以高级研究员和教授的身份加入中国科学院上海光学精密机械研究所。他的研究课题主要集中在超快光纤激光器、光子晶体光纤、非线性光纤和孤子动力学。目前已在光学期刊上发表了30多篇期刊论文,包括Nature Photonics, Nature Communications, Light S&A and Optica。
代表论文
[1] M. Pang, X, Jiang, W. He, G. Wong, G. Onishchukov, N. Y. Joly, G. Ahmed, C. R. Menyuk, and P. Russell, “Stable subpicosecond soliton fiber laser passively mode-locked by gigahertz acoustic resonance in photonic crystal fiber core”, Optica 2, 339 (2015).
[2] M. Pang, W. He, X. Jiang, and P. Russell, “All-optical bit storage in a fibre laser by optomechanically bound states of solitons”, Nature Photonics 10, 454 (2016).
[3]W. He, M. Pang, C. R. Menyuk, and P. Russell, “Sub-100-fs 1.87 GHz mode-locked fiber laser using stretched-soliton effects”, Optica 3, 1366 (2016).
[4]W. He, M. Pang, D. H. Yeh, J. Huang, C. R. Menyuk, and P. Russell, “Formation of optical supramolecular structures in a fibre laser by tailoring long-range soliton interactions”, Nature Communications 10, 5756 (2019).
[5]J. Huang, M. Pang, X. Jiang, F. Kottig, D. Schade, W. He, M. Butryn, and P. Russell, “Sub-two-cycle octave-spanning mid-infrared fiber laser”, Optica 7, 574 (2020).
[6]W. He, M. Pang, D. Yeh, J. Huang and P. Russell, “Synthesis and dissociation of soliton molecules in parallel optical-soliton reactors”, Light: Science & Applications 10:120 (2021).
[7] D. Yeh, W. He, M. Pang, X. Jiang, P. Russell, “Synchronization of GHz Core Resonances in Multiple Photonic Crystal Fiber Cores by Timing-modulated Harmonic Mode-locking”, Optica 8, 1581 (2021).
[8] J. Pan, Y. Chen, Z. Huang, C. Zhang, T. Chen, D. Liu, D. Wang, M. Pang, Y. Leng, “Self-referencing 3D Characterization of Ultrafast Optical-vortex Beams Using Tilted Interference TERMITES Technique Crystal Fiber”, Laser & Photonics Reviews, 2370019 (2023).
[9] Z. Luo, J. Huang, Y. Zheng, R. Yin, L. Zhang, X. Jiang, M. Pang, “Ultrahigh Transverse Mode Purity by Enhanced Modal Filtering in Double-clad Single-ring Hollow-core Photonic Crystal Fiber”, Laser & Photonics Reviews, 23701111 (2024).
[10] J. Pan, Z. Huang, Y. Chen, Z. Luo, F. Yu, D. Wu, T. Chen, D. Liu, Y. Yu, W. He, X. Jiang, M. Pang, Y. Leng and R. Li, “Broadband Dispersive-wave Emission Coupled with Two-stage Soliton Self-compression in Gas-filled Anti-resonant Hollow-core Fibers”, Laser & Photonics Reviews, 2400531 (2024).
[11] T. Chen, J. Pan, Z. Huang, Y. Yu, D. Liu, X. Chang, Z. Liu, W. He, X. Jiang, M. Pang, Y. Leng, and R. Li, “Octave-wide Broadening of Ultraviolet Dispersive Wave Driven by Soliton-splitting Dynamics”, Nature Communications, 15, 8671 (2024).