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Incompatibility between cavity resonances and wavevector matching: influence on threshold and beam structures of OPOs

机译:腔共振和波矢量匹配之间的不兼容:对OPO阈值和光束结构的影响

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We investigate theoretically and experimentally the interplay between cavity and double-refraction in continuous-wave optical parametric oscillators. We show that very basic geometrical effects can prevent transverse wavevector matching for the TEM/sub 00/ modes, and thus increase the threshold and change dramatically the beam structures when using a resonant (or double-pass) pump. We extend the work of Boyd and Kleinman to take these cavity-induced mismatches into account, and test experimentally the theoretical results using a cw type II KTP OPO. The transverse wavevector mismatch leads to the appearance of transverse modes with increasing order (up to TEM/sub 40-0/) and surprisingly induces structures that are different on signal and idler. The theory is able to predict quantitatively all selected transverse modes, and allows a simple interpretation in transverse Fourier space.
机译:从理论上和实验地进行调查,并在连续波光学参数振荡器中进行腔体和双折射之间的相互作用。我们表明,非常基本的几何效果可以防止对TEM / SUM 00 /模式的横向波动波匹配,从而增加阈值并在使用谐振(或双通)泵时急剧地改变光束结构。我们扩展了Boyd和Kleinman的工作,以考虑这些腔诱导的不匹配,并使用CW II型KTP OPO进行实验测试理论结果。横向波动器不匹配导致横向模式的出现随越来越多的顺序(最多tem / sub 40-0 /),并且令人惊讶地引起信号和惰轮上的结构。该理论能够预测定量地所有选择的横向模式,并允许在横向傅立叶空间中进行简单的解释。

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