基于BaGa4Se7晶体的中红外辐射源稳定性实验研究
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雄安新区科技创新专项项目(No.2022XAGG0181);辽宁省“兴辽英才”计划项目(No.XLYC2007074);中国科学院青年创新促进会资助项目(No.2023206)资助。


Experimental study of the stability of a mid infrared radiation source based on BaGa4Se7 crystals
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    摘要:

    在实际应用中,光源的输出能量稳定性影响着光源在各种应用中的可靠性和性能,如激光治疗、光谱分析、光电对抗以及光成像等领域。本文首先对光学参量振荡器(OPO)系统从激光泵浦源、谐振腔结构和非线性晶体三个方面对输出能量稳定性进行分析。实验方面,使用BaGa4Se7(BGSe)晶体搭建脉冲激光泵浦的3~8μm中红外OPO辐射源,从激光泵浦源和OPO系统两部分对输出能量波动性进行了详细的测量和分析。当输入泵浦能量为30mJ,正入射输出4.5μm波长时,平均能量为2.151mJ,标准差为5649 μJ,计算RMS波动为262。根据分析得出,随着激光增益的提高和腔损耗的减小,输出脉冲的波动减小。该研究为不同应用场景下BGSe晶体的红外辐射源的工作参数的选择提供了有益的指导。

    Abstract:

    In practice,the output energy stability of a light source affects the reliability and performance of the light source in various applications,such as laser therapy,spectral analysis,photoelectric countermeasures,and optical imaging.In this paper,the output energy stability of the optical parametric oscillator(OPO)system is first analyzed from three aspects,laser pumping source,resonant cavity structure and nonlinear crystal.Experimentally,a pulsed laser pumped 3~8μmmid infrared OPO radiation source is constructed using a BaGa4Se7(BGSe)crystal,and the output energy fluctuation is measured and analyzed in detail from both the laser pumping source and the OPO system.When the input pump energy is 30 mJ and the positive incidence output is 4.5μm,the average energy is 2.151 mJ with a standard deviation of 56.49 μJ,and the calculated RMS fluctuation is 2.62%.According to the analysis,it is concluded that the fluctuation of the output pulse decreases with the increase of the laser gain and the decrease of the cavity loss.This study provides a useful guide for the selection of operating parameters of infrared radiation sources with BGSe crystals in different application scenarios.

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李楠,李惟帆,祁峰,姚吉勇,郭丽媛,路远.基于BaGa4Se7晶体的中红外辐射源稳定性实验研究[J].激光与红外,2024,54(5):685~691
LI Nan, LI Wei-fan, QI Feng, YAO Ji-yong, GUO Li-yuan, LU Yuan. Experimental study of the stability of a mid infrared radiation source based on BaGa4Se7 crystals[J]. LASER & INFRARED,2024,54(5):685~691

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  • 最后修改日期:2023-12-04
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  • 在线发布日期: 2024-05-14
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