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首页> 外文期刊>Journal of Applied Spectroscopy >COMPARATIVE STUDIES OF EYE-SAFE INTRACAVITY AND EXTRACAVITY OPTICAL PARAMETRIC OSCILLATORS WITH AN UNSTABLE TELESCOPIC CAVITY
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COMPARATIVE STUDIES OF EYE-SAFE INTRACAVITY AND EXTRACAVITY OPTICAL PARAMETRIC OSCILLATORS WITH AN UNSTABLE TELESCOPIC CAVITY

机译:眼球不稳定型眼安全性和眼外光学参量振荡器的比较研究

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摘要

We have experimentally studied the lasing characteristics of an eye-safe optical parametric oscillator (OPO) with an unstable telescopic cavity when it is placed inside (intracavity OPO) and outside (extracavity OPO) the plane-parallel cavity of a pulsed, nearly single-mode KGW:Nd pump laser: We used a KTP crystal as the nonlinear medium for the OPO. We have shown that the intracavity OPO has the higher lasing efficiency. We have observed that the distribution of nonlinear losses introduced by the intracavity OPO, nonuniform over the cavity cross section, leads to an increase in the diameter and divergence of the radiation beam from the pump laser and a dependence of its temporal lasing dynamics on the transverse beam coordinate. We propose a physical model qualitatively explaining the spatial and temporal lasing dynamics of a radiation source with an intracavity OPO. Both OPO versions generate beams of radiation with about the same divergence. When the KGW:Nd laser has an electrical pumping energy of 7.3 J and a cavity length of 77 cm, the intracavity OPO and the extracavity OPO emit pulses with energies of 14.5 mJ and 12.0 mJ and duration 18 nsec and 13 nsec respectively. The divergence of the eye-safe radiation (X = 1.578 μm) at 86.5% of the total pulse energy is no greater than 5.5 mrad for an OPO output beam diameter of ≈2 mm.
机译:我们已经通过实验研究了具有不稳定的伸缩腔的人眼安全光学参量振荡器(OPO)的激光特性,将其放置在脉冲的,几乎单脉冲的平面平行腔的内部(腔内OPO)和外部(腔外OPO)模式KGW:钕泵浦激光器:我们使用KTP晶体作为OPO的非线性介质。我们已经表明,腔内OPO具有更高的激光发射效率。我们已经观察到,由腔内OPO引入的非线性损耗的分布在腔体横截面上不均匀,导致泵浦激光器的辐射束直径和发散增大,并且其瞬态激射动力学对横向激光的依赖性梁坐标。我们提出了一个定性地解释腔内OPO辐射源的时空激光动力学的物理模型。两种OPO版本均产生具有相同散度的辐射束。当KGW:Nd激光器的电泵浦能量为7.3 J,腔长为77 cm时,腔内OPO和腔外OPO发出的脉冲能量分别为14.5 mJ和12.0 mJ,持续时间分别为18纳秒和13纳秒。对于OPO输出光束直径≈2mm,人眼安全辐射(X = 1.578μm)在总脉冲能量的86.5%处的发散不大于5.5 mrad。

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