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Sensitivity of a three-mirror cavity to thermal and nonlinear lensing: Gaussian-beam analysis

机译:三镜腔对热和非线性透镜的敏感性:高斯光束分析

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摘要

We consider a compact three-mirror cavity consisting of a fiat output coupler, a curved folding mirror, and an active medium with one facet cut at the Brewster angle and the other facet coated for unit reflectivity. We examine the sensitivity to thermal lensing and to self-focusing in the active medium of the Gaussian beam that is circulating in that cavity. We use a simple thin-lens model; the astigmatism of the beam that is circulating in the cavity and the nonlinear coupling between the field distributions along the two orthogonal axes are taken into account. We find configurations in which beam ellipticity is compensated for at either end of the cavity in the presence of thermal lensing. We have derived an analytical criterion that predicts the sensitivity of the beam size to nonlinear lensing. The ability of the cavity to favor self-mode locking is found to be sensitive to the strength of thermal lensing. In the absence of thermal lensing, cavities operated as telescopic systems (C=0) or self-imaging systems (B=0) are most appropriate for achieving self-mode locking, with nonlinear mode selection accomplished through saturation of the spatially varying laser gain. We identify conditions for which self-mode locking can be produced by variable-reflectivity output couplers with either maximum or miuimum reflectivity at the center of the coupler. We use our model to estimate the nonlinear gain produced in laser cavities equipped with such output couplers. We identify a cavity configuration for which nonlinear lensing can simultaneously produce mode locking and correction of beam ellipticity at the output coupler.
机译:我们考虑一个紧凑的三反射镜腔,该反射镜腔由一个平面输出耦合器,一个弯曲的折叠镜和一种活性介质组成,其中一个刻面切成布鲁斯特角,另一个刻面镀有单位反射率。我们研究了在该腔中循环的高斯光束的有源介质中对热透镜成像和自聚焦的敏感性。我们使用一个简单的薄镜模型;考虑了在腔中循环的光束的像散以及沿两个正交轴的场分布之间的非线性耦合。我们发现在存在热透镜的情况下,在腔体的任一端都可以补偿光束椭圆度的配置。我们已经得出了一个分析标准,该标准可预测光束尺寸对非线性透镜的敏感性。发现腔支持自模式锁定的能力对热透镜的强度敏感。在没有热透镜的情况下,用作伸缩系统(C = 0)或自成像系统(B = 0)的腔体最适合实现自锁模,通过使空间变化的激光增益饱和来实现非线性模式选择。我们确定了可变反射率输出耦合器可以产生自锁模的条件,可变耦合器输出耦合器的中心具有最大或最小反射率。我们使用我们的模型来估计在装有此类输出耦合器的激光腔中产生的非线性增益。我们确定了一个腔结构,非线性透镜可以同时在输出耦合器上产生锁模和光束椭圆度校正。

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