Infrared and Laser Engineering, Volume. 52, Issue 10, 20230063(2023)
Method for characterizing frequency of frequency-stabilized semiconductor lasers
[1] [1] Behroozpour B, Sbn P A M, Quack N, et al. 11.8 Chipscale electrooptical 3D FMCW lidar with 8 μm ranging precision[C]2016 IEEE International SolidState Circuits Conference (ISSCC), 2016: 214216.
[2] Kai Qiao, Jie Yang, Chenfei Jin. Research on penetrating imaging LIDAR based on time-correlated single photon counting (invited). Infrared and Laser Engineering, 51, 20220404(2022).
[9] K L Mu, X R Ma, S G Zhang, et al. Measurement of frequency stability in tunable lasers by using an F-P interferometer. Optoelectronics Letters, 10, 74-76(2014).
[12] Tao Liu, Xiurong Ma, Shuanggen Zhang, . Measurement of frequency stability of two independent lasers with the same model. Chinese Journal of Lasers, 39, 0408006(2012).
[14] Hongcheng Duan, Jin Wu, Zhilong Zhao, . Frequency drift measurement on single-frequency laser by short fiber delayed self-heterodyne. Chinese Journal of Lasers, 42, 0408006(2015).
[17] Fei Meng, Shiying Cao, Yue Cai, . Study of the femtosecond fiber comb and absolute optical frequency measurement. Acta Physica Sinica, 60, 125-131(2011).
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Shanshan Li, Jiewei Yang, Tianxin Yang, Zhaoying Wang, Hengkang Zhang. Method for characterizing frequency of frequency-stabilized semiconductor lasers[J]. Infrared and Laser Engineering, 2023, 52(10): 20230063
Category: Lasers & Laser optics
Received: Feb. 13, 2023
Accepted: --
Published Online: Nov. 21, 2023
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