作者单位
摘要
固体激光技术重点实验室,北京 100015
利用啁啾脉冲增益饱和放大特性,搭建了一台基于泵浦分束结构的波长可调谐1 μm全保偏光纤超短脉冲激光器。该激光器由超短脉冲激光振荡器和超短脉冲激光放大器组成,控制注入到放大器的啁啾脉冲能量,使放大器处于增益饱和或非饱和状态,从而实现激光中心波长的精确调节。实验中,激光器可产生1030.0~1034.5 nm波长可调谐的超短脉冲激光,光谱带宽大于13.1 nm。在整个波长调谐范围内,放大脉冲激光的信噪比均大于55 dB,时域脉宽为7.1~7.5 ps。此外,得益于全保偏光纤架构,该1 μm超短脉冲光源表现出良好的长期稳定性,平均功率的相对抖动低至0.1%。该激光器产生的波长可调谐超短脉冲激光,能够精准匹配Yb∶YAG、Yb∶CaF2、Yb∶Lu2O3等晶体的发射峰,可为后续Yb∶YAG、Yb∶CaF2、Yb∶Lu2O3等大能量超短脉冲固体激光器提供紧凑、便捷、稳定的种子光源。
激光器 光纤激光器 超短脉冲 泵浦分束 波长可调谐 
中国激光
2023, 50(19): 1901002
Kun Huang 1,*Yinqi Wang 1Jianan Fang 1Huaixi Chen 2,3[ ... ]Heping Zeng 1,5,6,7,*
Author Affiliations
Abstract
1 State Key Laboratory of Precision Spectroscopy, East China Normal University, Shanghai200062, China
2 Key Laboratory of Optoelectronic Materials Chemistry and Physics, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences, Fuzhou350002, China
3 University of Chinese Academy of Sciences, Beijing100049, China
4 Shanghai Key Laboratory of Modern Optical System, and Engineering Research Center of Optical Instrument and System, Ministry of Education, School of Optical Electrical and Computer Engineering, University of Shanghai for Science and Technology, Shanghai200093, China
5 Jinan Institute of Quantum Technology, Jinan250101, China
6 CAS Center for Excellence in Ultra-intense Laser Science, Shanghai201800, China
7 Shanghai Research Center for Quantum Sciences, Shanghai201315, China
We have proposed and experimentally demonstrated a novel scheme for efficient mid-infrared difference-frequency generation based on passively synchronized fiber lasers. The adoption of coincident seeding pulses in the nonlinear conversion process could substantially lower the pumping threshold for mid-infrared parametric emission. Consequently, a picosecond mid-infrared source at 3.1 μm was prepared with watt-level average power, and a maximum power conversion efficiency of 77% was realized from pump to down-converted light. Additionally, the long-term stability of generated power was manifested with a relative fluctuation as low as 0.17% over one hour. Thanks to the all-optical passive synchronization and all-polarization-maintaining fiber architecture, the implemented laser system was also featured with simplicity, compactness and robustness, which would favor subsequent applications beyond laboratory operation.
mid-infrared fiber laser nonlinear optics difference-frequency generation 
High Power Laser Science and Engineering
2021, 9(1): 010000e4
作者单位
摘要
1 上海理工大学光电信息与计算机工程学院, 上海 200093
2 华东师范大学精密光谱科学与技术国家重点实验室, 上海 200062
3 济南量子技术研究院, 山东 济南 250101
实验搭建了基于同步脉冲泵浦的非线性差频中红外光源,利用主-从注入式全光调制技术实现了保偏掺饵和掺镱锁模光纤激光器的被动同步输出,结合高非线性光纤光谱展宽和宽带可调谐滤波器,获得了2940~3260 nm宽波段可调谐的中红外皮秒激光,平均功率为580~926 mW,最大泵浦光转换效率为41%。实验发现,小功率的同步诱导脉冲注入可以大幅降低中红外参量产生的泵浦阈值,从而放宽了高效率中红外产生对高功率泵浦光场的要求。
激光光学 可调谐激光 差频产生 红外激光 同步激光 
中国激光
2020, 47(11): 1115001
作者单位
摘要
1 上海理工大学光电信息与计算机工程学院, 上海 200093
2 华东师范大学精密光谱科学与技术国家重点实验室, 上海 200062
3 济南量子技术研究院, 山东 济南 250101
实验探究了基于被动全光同步的中红外差频产生技术,采用主-从注入锁定实现了全保偏掺镱和掺铒锁模光纤激光器的同步脉冲输出,并经过级联光纤放大在PPLN晶体中获得了中心波长为3071 nm的中红外皮秒脉冲,最大泵浦光转换效率为68.3%,峰值平均功率达1.36 W。研究发现,所使用的同步脉冲诱导差频技术能够显著降低中红外产生的泵浦阈值。此外,得益于脉冲产生、同步与放大全链路的保偏光纤架构,中红外超快光源表现出良好的长期稳定性,平均功率的相对抖动低至0.2%。
光纤激光器 差频产生 同步激光 中红外激光 
光学学报
2020, 40(20): 2036001

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