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Theoretical analysis of a cascaded continuous-wave optical parametric oscillator

机译:级联连续波光参量振荡器的理论分析

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Threshold and conversion efficiency of a cascaded continuous-wave (CW) optical parametric oscillator (OPO) which can obtain CW terahertz (THz) light are analyzed by the plane wave approach. The model predicts experimental results of the first-order cascaded threshold. The theoretically predicted threshold for the backward idler parametric process agrees with the experimental data. Validation with a high-order cascaded parametric process awaits completion of experiments. At a pump wavelength of 1,030 nm and temperature of 120 C, the threshold intensity of the forward idler parametric process was 2.2-2.4 times that of the backward process when the period length of the MgO:periodically poled lithium niobate crystal was 24-30 μm. The energy efficiency of CW THz light at a cascade order smaller than 6 is 10~(-5)-10~(-4). Moreover, efficiency of N cascaded processes can be increased by a factor of N compared with that of a single parametric process, which is limited by the Manley-Rowe relationship. To our knowledge, this is the first theoretical treatment of threshold and energy efficiency of a cascaded CW OPO.
机译:通过平面波方法分析了可以获得CW太赫兹(THz)光的级联连续波(CW)光参量振荡器(OPO)的阈值和转换效率。该模型预测一阶级联阈值的实验结果。后向惰轮参数过程的理论预测阈值与实验数据一致。使用高阶级联参数过程的验证需要等待实验完成。在MgO:周期极化铌酸锂晶体的周期长度为24-30μm时,在1030 nm的泵浦波长和120°C的温度下,正向惰轮参数过程的阈值强度是反向过程的阈值强度的2.2-2.4倍。级联小于6的连续波太赫兹光的能量效率为10〜(-5)-10〜(-4)。此外,与单个参数过程的效率相比,N个级联过程的效率可以提高N倍,而后者受Manley-Rowe关系的限制。据我们所知,这是级联CW OPO的阈值和能效的第一个理论处理。

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