Advanced Photonics Nexus, Volume. 4, Issue 3, 036011(2025)
Mapping ultrafast timing jitter in dispersion-managed 89 GHz frequency microcombs via self-heterodyne linear interferometry Editors' Pick
Wenting Wang1,2、†, Wenzheng Liu1、*, Hao Liu1, Tristan Melton1, Alwaleed Aldhafeeri1, Dong-Il Lee1, Jinghui Yang1, Abhinav Kumar Vinod1, Jinkang Lim1, Yoon-Soo Jang1, Heng Zhou3, Mingbin Yu4,5, Patrick Guo-Qiang Lo4,6, Dim-Lee Kwong4, Peter DeVore7, Jason Chou7, Ninghua Zhu8, and Chee Wei Wong1、*
Author Affiliations
1University of California Los Angeles, Fang Lu Mesoscopic Optics and Quantum Electronics Laboratory, Los Angeles, California, United States2Beijing Institute of Technology, School of Optics and Photonics, Mesoscopic Optics and Advanced Instruments Laboratory, Beijing, China3University of Electronic Science and Technology of China, Key Lab of Optical Fiber Sensing and Communication Networks, Chengdu, China4Institute of Microelectronics, A*STAR, Singapore5Shanghai Institute of Microsystem and Information Technology, Shanghai Industrial Technology Research Institute, State Key Laboratory of Functional Materials for Informatics, Shanghai, China6Advanced Micro Foundry, Singapore7Lawrence Livermore National Laboratory, Livermore, California, United States8Nankai University, Institute of Intelligent Photonics, Tianjin, Chinashow less
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Wenting Wang, Wenzheng Liu, Hao Liu, Tristan Melton, Alwaleed Aldhafeeri, Dong-Il Lee, Jinghui Yang, Abhinav Kumar Vinod, Jinkang Lim, Yoon-Soo Jang, Heng Zhou, Mingbin Yu, Patrick Guo-Qiang Lo, Dim-Lee Kwong, Peter DeVore, Jason Chou, Ninghua Zhu, Chee Wei Wong, "Mapping ultrafast timing jitter in dispersion-managed 89 GHz frequency microcombs via self-heterodyne linear interferometry," Adv. Photon. Nexus 4, 036011 (2025)
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