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Theoretical Analysis of Intra-Cavity Second-Harmonic Generation of Semiconductor Lasers by a Periodically Poled Nonlinear Crystal Waveguide

机译:周期极化非线性晶体波导腔内二次谐波产生的理论分析

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摘要

General time-domain traveling wave rate equations are employed for the simulation of the intra-cavity second harmonic generation (IC-SHG) of semiconductor lasers by a periodically poled nonlinear crystal waveguide. A 1060 nm high power, single-mode, ridge waveguide semiconductor laser is used in the simulation. The SHG crystal is a MgO-doped periodically poled lithium niobate with a single-mode ridge waveguide. Comparisons are made between the computed and experimental results of single-pass SHG for the purposes of model validation. The design of an IC-SHG green laser is further compared to the single-pass SHG laser in terms of the SHG output power, conversion efficiency, temperature tolerance, and high speed modulation capability. It is theoretically found that by using the IC-SHG configuration, SHG power and efficiency can be improved with a relatively short nonlinear crystal.
机译:一般的时域行波速率方程用于通过周期性极化的非线性晶体波导模拟半导体激光器的腔内二次谐波(IC-SHG)。模拟中使用了1060 nm高功率,单模,脊形波导半导体激光器。 SHG晶体是具有单模脊形波导的MgO掺杂的周期性极化铌酸锂。为了进行模型验证,对单程SHG的计算结果和实验结果进行了比较。在SHG输出功率,转换效率,温度容限和高速调制能力方面,将IC-SHG绿色激光器的设计与单程SHG激光器进行了比较。从理论上发现,通过使用IC-SHG配置,可以使用相对较短的非线性晶体来提高SHG功率和效率。

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