喻晓 1,2吕梦洁 1,3张旭 1,2贾爱爱 1,2[ ... ]杨俊 1,2
作者单位
摘要
1 国防科技大学智能科学学院,湖南 长沙 410073
2 国防科技大学量子信息学科交叉中心,湖南 长沙 410073
3 中国工程物理研究院激光聚变研究中心,四川 绵阳 622150
4 火箭军工程大学,陕西 西安 710025
1560 nm窄线宽激光器作为光学C波段的重要波长成分,在光纤传感和激光雷达等领域有着广泛的应用,实现该波段的激光稳频对光谱学和精密测量具有重要意义。本文采用1560 nm窄线宽光纤激光器作为种子光源,倍频至780 nm波段后,利用调制转移光谱(MTS)将倍频光锁定在铷原子(85Rb)D2线的3-4交叉峰上;并研究探测光和泵浦光功率比、调制解调信号的频率和幅值来优化MTS信号,最终同时实现1560 nm光纤激光器的频率锁定及780 nm的稳频输出。激光器稳频后与低噪声精密锁定的光学频率梳进行拍频,通过频率计测量拍频信号并进行Allan方差分析,积分时间为10 s时,相对频率稳定度为1.4×10-11
激光器 光纤光学 光纤激光器 调制转移光谱 铷原子 频率锁定 频率稳定度 
中国激光
2022, 49(3): 0301002
Chunhua Wei 1,2Shuhua Yan 1,2,*Aiai Jia 1,2Yukun Luo 1,2[ ... ]Zehuan Li 1,2
Author Affiliations
Abstract
1 Department of Instrument Science and Technology, College of Mechatronic Engineering and Automation, National University of Defense Technology, Changsha 410073, China
2 Interdisciplinary Center for Quantum Information, National University of Defense Technology, Changsha 410073, China
We present a compact, low-noise, and inexpensive optical phase-lock loop (OPLL) system to synchronize the frequency and the phase between two external cavity diode lasers. Based on a direct digital synthesizer technique, a programmable radio-frequency generator is implemented as the reference signal source. The OPLL has a narrow beat note linewidth below 1 Hz and a residual mean-square phase error of 0.06 rad2 in a 10 MHz integration bandwidth. The experimental test results prove the competent performance of the system, which is promising as a low-budget choice in atomic physics applications.
140.0140 Lasers and laser optics 140.3518 Lasers, frequency modulated 250.4745 Optical processing devices 
Chinese Optics Letters
2016, 14(5): 051403
Yukun Luo 1,2Shuhua Yan 1,2,*Aiai Jia 1,2Chunhua Wei 1,2[ ... ]Jun Yang 1,2
Author Affiliations
Abstract
1 Department of Instrument Science and Technology, College of Mechatronic Engineering and Automation, National University of Defense Technology, Changsha 410073, China
2 Interdisciplinary Center for Quantum Information, National University of Defense Technology, Changsha 410073, China
We present a laser frequency locking system based on acousto-optic modulation transfer spectroscopy (AOMTS). Theoretical and experimental investigations are carried out to optimize the locking performance mainly from the view of the modulation frequency and index for the specific scheme of AOMTS. An FWHM linewidth of 63 kHz is achieved and the frequency stability in terms of Allan standard deviation reaches 1.4×10 12 at 30 s. The frequency shifting capacity is validated throughout the acousto-optic modulator bandwidth while the laser is kept locked. This work offers a different but efficient choice for applications calling for both stabilized and tunable laser frequencies.
140.3425 Laser stabilization 140.3518 Lasers, frequency modulated 020.1335 Atom optics 300.6380 Spectroscopy, modulation 
Chinese Optics Letters
2016, 14(12): 121401

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