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Nanosecond-laser-induced damage in potassium titanyl phosphate: pure 532 nm pumping and frequency conversion situations

机译:纳秒级激光对钛氧钛酸钾造成的损害:纯532 nm泵浦和频率转换情况

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摘要

Nanosecond-laser-induced damage measurements in the bulk of KTiOPO_(4) (KTP) crystals are reported using incident 532 nm light or using incident 1064 nm light, which pumps more or less efficient second harmonic generation. No damage threshold fatigue effect is observed with pure 532 nm irradiation. The damage threshold of Z-polarized light is higher than the one for X- or Y-polarized light. During frequency doubling, the damage threshold was found to be lower than for pure 1064 or 532 nm irradiation. More data to quantify the cooperative damage mechanism were generated by performing fluence ramp experiments with varying conditions and monitoring the conversion efficiency. All damage thresholds plotted against the conversion efficiency align close to a characteristic curve.
机译:使用入射532 nm的光或入射的1064 nm的光报告了大部分KTiOPO_(4)(KTP)晶体中纳秒级激光诱导的损伤测量,这或多或少地产生了有效的二次谐波。在纯532 nm辐射下未观察到损伤阈值疲劳效应。 Z偏振光的损伤阈值高于X或Y偏振光的损伤阈值。在倍频期间,发现损伤阈值低于纯1064或532 nm辐射的损伤阈值。通过在不同条件下进行注量梯度实验并监测转化效率,可以生成更多数据来量化协同损伤机理。相对于转换效率绘制的所有损坏阈值都接近特性曲线。

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