Juwiler I, Arie A, Skliar A, Rosenman G
Opt Lett. 1999 Sep 1;24(17):1236-8. doi: 10.1364/ol.24.001236.
In standing-wave enhancement cavities for frequency doubling, second-harmonic fields are generated in both directions of propagation. To add the fields coherently, one should compensate for the phase shifts introduced by dispersive elements in the cavity. We experimentally demonstrate phase compensation in a compact standing-wave frequency-doubling cavity by use of a wedged periodically poled KTP crystal. The highest conversion efficiency and second-harmonic power obtained by pumping with a 1064-nm cw Nd:YAG laser were 69.4% and 268 mW, respectively.
在用于倍频的驻波增强腔中,二次谐波场在两个传播方向上产生。为了使场相干叠加,需要补偿腔内色散元件引入的相移。我们通过使用楔形周期极化KTP晶体,在一个紧凑的驻波倍频腔中通过实验证明了相位补偿。用1064nm连续波Nd:YAG激光泵浦时获得的最高转换效率和二次谐波功率分别为69.4%和268mW。