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Theoretical analysis of a continuous-wave 323 nm laser generated by a singly resonant optical parametric oscillator with intracavity sum-frequency generation

机译:具有单谐振光学参数振荡器与腔内和频率产生的连续波323nm激光器的理论分析

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摘要

Theoretical calculations of a singly resonant optical parametric oscillator (SRO) with intracavity sum-frequency generation (SFG) (IC-SFG-SRO) are presented to obtain tunable ultraviolet laser radiation at 323 nm. Under the plane-wave approximation, simple models considering different spatial orderings of SRO and SFG processes are set up. The calculations are in good agreement with the experimental results, and some important simulation parameters are also obtained. According to these parameters, the output characteristics of the 532 nm green laser pumped SRO with an intracavity SFG between the pump and the resonant signal near 822 nm and the 1064 nm infrared laser pumped SRO with an intracavity SFG between the pump and the resonant signal near 1644 nm are predicted and optimized. The models and simulation parameters provide guidelines for optimizing the continuous-wave IC-SFG-SRO.
机译:具有腔内和频率产生(SFG)(IC-SFG-SRO)的单谐振光学参量振荡器(SRO)的理论计算以获得323nm的可调谐紫外激光辐射。 在平面波近似下,设置了考虑SRO和SFG进程的不同空间排序的简单模型。 计算与实验结果吻合良好,也得到了一些重要的模拟参数。 根据这些参数,532nm绿色激光器的输出特性用泵和谐振信号之间的腔内SFG泵浦SRO,并在822nm附近的谐振信号和1064nm红外激光器泵浦SFG与泵之间的腔内SFG和附近的谐振信号。 预测和优化1644 nm。 模型和仿真参数提供了优化连续波IC-SFG-SRO的指导。

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