典型文献
Repetition rate locked single-soliton microcomb generation via rapid frequency sweep and sideband thermal compensation
文献摘要:
Dissipative Kerr solitons (DKSs) with mode-locked pulse trains in high-Q optical microresonators possess low-noise and broadband parallelized comb lines, having already found plentiful cutting-edge applications. However, thermal bistability and thermal noise caused by the high microresonator power and large temperature exchange between microresonator and the environment would prevent soliton microcomb formation and deteriorate the phase and frequency noise. Here, a novel method that combines rapid frequency sweep with optical sideband thermal compensation is presented, providing a simple and reliable way to get into the single-soliton state. Meanwhile, it is shown that the phase and frequency noises of the generated soliton are greatly reduced. Moreover, by closing the locking loop, an in-loop repetition rate fractional instability of 5.5×10-15 at 1 s integration time and a triangular linear repetition rate sweep with 2.5 MHz could be realized. This demonstration provides a means for the generation, locking, and tuning of a soliton microcomb, paving the way for the application of single-soliton microcombs in low-phase-noise microwave generation and laser ranging.
文献关键词:
中图分类号:
作者姓名:
Runlin Miao;Chenxi Zhang;Xin Zheng;Xiang’ai Cheng;Ke Yin;Tian Jiang
作者机构:
College of Advanced Interdisciplinary Studies, National University of Defense Technology, Changsha 410073, China;State Key Laboratory of Pulsed Power Laser Technology, Changsha 410073, China;Hunan Provincial Key Laboratory of High Energy Laser Technology, Changsha 410073, China;Defense Innovation Institute, Academy of Military Sciences PLA China, Beijing 100071, China;Beijing Institute for Advanced Study, National University of Defense Technology, Beijing 100000, China;e-mail: cqyinke@126.com;e-mail: tjiang@nudt.edu.cn
文献出处:
引用格式:
[1]Runlin Miao;Chenxi Zhang;Xin Zheng;Xiang’ai Cheng;Ke Yin;Tian Jiang-.Repetition rate locked single-soliton microcomb generation via rapid frequency sweep and sideband thermal compensation)[J].光子学研究(英文),2022(08):1859
A类:
DKSs,bistability
B类:
Repetition,locked,single,generation,via,rapid,frequency,sweep,sideband,thermal,compensation,Dissipative,Kerr,solitons,mode,pulse,trains,high,optical,microresonators,possess,low,broadband,parallelized,lines,having,already,found,plentiful,cutting,edge,applications,However,caused,by,power,large,temperature,exchange,between,environment,would,prevent,formation,deteriorate,phase,Here,novel,method,that,combines,presented,providing,simple,reliable,way,get,into,state,Meanwhile,shown,noises,generated,are,greatly,reduced,Moreover,closing,locking,loop,repetition,fractional,instability,integration,triangular,linear,MHz,could,realized,This,demonstration,provides,means,tuning,paving,microcombs,microwave,laser,ranging
AB值:
0.547058
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