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Multimode pumping of optical parametric oscillators

机译:光学参量振荡器的多模泵浦

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Calculations suggest that optical parametric oscillators (OPO's) can be efficiently pumped using multimode, divergent pump sources. The influence of pump beam divergence and mode structure upon OPO performance is measured for both noncritical phase-matching, and OPO's with walkoff. Multimode OPO pumping is shown to be efficient, provided appropriate nonlinear crystals and OPO cavities are employed; the nonlinear crystal must have sufficient angular acceptance to tolerate a divergent pump; the OPO cavity must support modes that match the divergence and spatial intensity characteristics of the pump, For low-order pump modes, the OPO can be made to match the mode of the pump. Higher order pump modes reduce the OPO efficiency, and cause a saturation of efficiency with increasing pump power. The efficiency is degraded in a similar fashion in the presence of walkoff. Multimode pumping is more difficult in longer OPO cavities due to increased buildup time of higher order OPO modes.
机译:计算表明,可以使用多模,发散泵浦源有效地泵浦光学参量振荡器(OPO)。对于非关键相位匹配和带有跳动的OPO,都测量了泵浦光束发散度和模式结构对OPO性能的影响。如果使用适当的非线性晶体和OPO腔,则多模OPO抽运被证明是有效的。非线性晶体必须具有足够的角度接受度以容许发散泵。 OPO腔必须支持与泵的散度和空间强度特征相匹配的模式。对于低阶泵模式,可以使OPO与泵的模式相匹配。高阶泵模式会降低OPO效率,并随着泵功率的增加而导致效率饱和。在存在罢工的情况下,效率会以类似的方式降低。由于高阶OPO模式的建立时间增加,因此在较长的OPO腔中进行多模式泵送更加困难。

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