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Multiple-wavelength quasi-phase-matching for efficient idler generation in MgO:LiNbO_(3) based nanosecond optical parametric oscillator

机译:基于MgO:LiNbO_(3)的纳秒级光学参量振荡器中的多波长准相位匹配可有效地产生惰轮

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摘要

We present numerical results for optimization of the overall idler conversion efficiency of a nanosecond optical parametric oscillator (OPO), wherein the signal generated in the OPO process is also used as the pump for a difference frequency generation (DFG) process in a quasi-periodic MgO:LiNbO_(3) crystal. The phase-matching conditions are considered such that the generated idler frequencies in both the processes (i.e., OPO and DFG) coincide. Optimization for the idler generation has been performed with respect to the different parameters, such as input pump power, pump pulse duration, and the output coupler reflectivity, for quasi-phase-matched interaction in MgO:LiNbO_(3). Wavelength of the pump, signal, and idler waves considered in the optimization are 1.064 (mu)m, 1.456 (mu)m, and 3.95 (mu)m, respectively. A maximum overall idler generation efficiency of approx=33percent could be obtained in the simultaneous OPO + DFG process for a pump pulse duration of 72 ns and output coupler reflectivity (R_(s)) of 90percent, whereas for the stand-alone OPO process, the maximum idler generation efficiency was found to be approx=15percent. The optimization has been illustrated for an average pump power of 8 W at a pulse repetition frequency (PRF) of 10 kHz. This approach of simultaneous OPO + DFG process can be employed to significantly enhance the idler generation efficiency of nanosecond OPOs.
机译:我们提供了数值结果,用于优化纳秒级光学参量振荡器(OPO)的总体惰轮转换效率,其中在OPO过程中生成的信号还用作准周期的差频生成(DFG)过程的泵浦MgO:LiNbO_(3)晶体。考虑相位匹配条件,使得在两个过程(即,OPO和DFG)中产生的空转频率一致。已针对MgO:LiNbO_(3)中的准相位匹配相互作用,针对不同参数(例如输入泵浦功率,泵浦脉冲持续时间和输出耦合器反射率)进行了惰轮生成的优化。在优化中考虑的泵浦波,信号波和惰波的波长分别为1.064μm,1.456μm和3.95μm。对于72 ns的泵浦脉冲持续时间和90%的输出耦合器反射率(R_(s)),在同时的OPO + DFG工艺中可以获得大约33%的最大总惰轮产生效率,而对于独立的OPO工艺,发现最大的惰轮产生效率约为15%。已经针对在10 kHz的脉冲重复频率(PRF)时8 W的平均泵浦功率进行了优化。这种同时进行OPO + DFG工艺的方法可以用来显着提高纳秒级OPO的惰轮产生效率。

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