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Non-collinear nanosecond optical parametric oscillator based on periodically poled LN with tilted domain walls

机译:基于具有倾斜畴壁的周期性极化LN的非共线纳秒光学参量振荡器

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We report on a non-collinear, 1064nm pumped, 10 kHz repetition rate ns-OPO which consists of a 13 mm long periodically poled lithium niobate (PPLN) crystal in a hemispherical optical cavity. The non-collinear phase-matching is achieved by tilting the domains by 60° with respect to the pump beam. This phase-matching avoids back conversion of signal and idler radiation into pump radiation and thus improves the spatial quality of the generated OPO radiation considerably. At a pump power of 5.5 W the OPO provided a conversion efficiency of up to 34%. The generated OPO pulses with a total power of up to 1.85 W were emitted in an almost diffraction limited beam with a M~2-value of 1.1. The beam quality did not change when the pump power was varied in the range of 2-5 W.
机译:我们报告了一个非共线,泵浦的1064nm,10 kHz重复频率ns-OPO,它由一个在半球形光学腔中长13 mm的周期性极化铌酸锂(PPLN)晶体组成。通过将畴相对于泵浦光束倾斜60°,可以实现非共线相位匹配。这种相位匹配避免了信号和空转辐射向泵浦辐射的反向转换,因此大大提高了所产生的OPO辐射的空间质量。在5.5 W的泵浦功率下,OPO的转换效率高达34%。产生的总功率高达1.85 W的OPO脉冲在M〜2-值为1.1的几乎受衍射限制的光束中发射。当泵浦功率在2-5 W范围内变化时,光束质量不会改变。

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