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外腔级联金刚石拉曼激光输出特性仿真

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具有宽光谱透过范围和大拉曼频移特性的金刚石晶体在作为拉曼介质实现多波长激光输出方面具有显著优势。为了实现高效率的多波长拉曼激光转换,同时实现多参数的可调控输出,需要对高阶Stokes光输出特性进行理论分析。基于外腔拉曼稳态模型推导了三阶Stokes光特性理论公式,并利用该模型预测了外腔泵浦金刚石拉曼激光器的关键参数对运转特性的影响;有效模拟了三阶Stokes光输出透过率与最大转换效率及拉曼激光产生阈值之间的关系,并分析了不同泵浦功率时,泵浦光束腰半径、输出镜透过率、金刚石晶体长度等参数与输出功率之间的关系。本理论模型可为级联晶体拉曼激光器的实验研究提供参考和指导。
Output Characteristic Simulation of External Cavity Cascaded Diamond Raman Laser
Objective Lasers with different wavelengths have crucial applications such as optoelectronic countermeasures,lidar,precision measurement,and medical treatment.Compared to traditional population inversion lasers,stimulated Raman scattering(SRS)technology featuring a large Raman frequency shift is more conducive to the wavelength expansion of lasers and can achieve wavelength outputs that are difficult for conventional lasers to obtain.Additionally,unlike other second-order nonlinear effects,the self-phase matching characteristic of SRS allows for the generation of Stokes optical outputs at multiple frequencies via cascaded conversion in a gain medium.Diamond is an excellent Raman crystal providing ultra-high thermal conductivity(>2000 W·m-1·K-1)and a high Raman gain coefficient(~10 cm/GW@1 μm),and outperforming other Raman crystals such as YVO4,BaWO4,KGW,and Ba(NO3)2.The diamond Raman laser(DRL)based on cascaded conversion is an effective method for generating multi-wavelength laser output.Meanwhile,a theoretical output characteristic analysis of high-order Stokes light is necessary to achieve efficient multi-wavelength Raman laser conversion and adjustable output with various parameters.Methods We derive the theoretical equation for the third-order Stokes output characteristics in continuous wave pumping conditions based on the first-order and second-order external cavity Raman steady-state models.The steady-state equations for first-order and second-order Stokes while generating third-order Stokes light are obtained.The Raman cavity mode is simulated based on the designed diamond Raman resonator.The beam radii of the pump and first-order,second-order,and third-order Stokes light are determined.By employing a steady-state model and resonant cavity parameters of the designed DRL,we predict the output characteristics of a continuous wave external cavity pumped DRL.Additionally,we simulate the interaction between the output transmittance,maximum conversion efficiency,and Raman generation threshold of the third-order Stokes light.Additionally,we analyze the dependence of output power on parameters such as pump beam waist size,output transmittance,crystal length,and other related parameters under different pump powers.Results and Discussions By adopting the diamond Raman steady-state model,we calculate the variation of first-order,second-order,and third-order Stokes optical output power with pump power.The results demonstrated that output of different wavelengths with arbitrary power ratios can be achieved by controlling the output transmittance at different orders.We calculate the generation threshold and maximum conversion efficiency of third-order Stokes light(1851 nm)under various output transmittance.The simulation results indicate that optimal third-order threshold and conversion efficiency can be achieved by designing suitable output transmittance according to experimental pump conditions.We study the relationship between Stokes output power and output transmittance,pump beam waist size,and crystal length under different pump powers.The simulations reveal that optimal output power can be obtained by adjusting the pump beam waist size,output transmittance,crystal length,and other related parameters,thus providing theoretical guidance for future experimental research.Conclusions To deal with the current lack of parameter calculation models for cascaded Raman oscillators,we develop a third-order Stokes theoretical model based on first-order and second-order theoretical models.We provide the theoretical framework for generating third-order Stokes light and employ the diamond Raman steady-state model to calculate the variation of first-order,second-order,and third-order Stokes optical output power with pump power.The results indicate that outputs of different wavelengths and arbitrary power ratios can be achieved by controlling the output transmittance at different orders.Furthermore,the steady-state equation for any Stokes order laser can be derived by adopting the same deviation method.The theoretical derivation and numerical calculations presented in our study serve as valuable tools for designing and analyzing external cavity dual-pass pumped Raman lasers,providing references for experimental research in this field.

multi-wavelengthdiamondstimulated Raman scatteringcascaded conversionsteady-state model

李晓伟、陈晖、崔雨凡、丁洁、齐瑶瑶、颜秉政、王雨雷、吕志伟、白振旭

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河北工业大学先进激光技术研究中心,天津 300401

河北省先进激光技术与装备重点实验室,天津 300401

多波长 金刚石 受激拉曼散射 级联转换 稳态模型

2024

光学学报
中国光学学会 中国科学院上海光学精密机械研究所

光学学报

CSTPCD北大核心
影响因子:1.931
ISSN:0253-2239
年,卷(期):2024.44(22)