首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Intensity-dependent refractive index in a nonresonant cw Raman laser that is due to thermal heating of the Raman-active gas
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Intensity-dependent refractive index in a nonresonant cw Raman laser that is due to thermal heating of the Raman-active gas

机译:非共振连续拉曼激光器中与强度有关的折射率,这是由于拉曼活性气体的热加热所致

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摘要

The refractive index of H-2 is shown to decrease linearly as a function of Stokes power and, to a much lesser extent, pump power in a nonresonant cw Raman laser. The dominant source of the index shift is shown to be thermal and significantly larger than dispersion associated with the Raman resonance. A steady-state theoretical model based on internal heating that is due to inelastic Raman scattering events accurately describes the observed behavior. With this model, frequency pulling of the Raman cavity resonance and phase distortions of the intracavity Gaussian beam are predicted for various levels of generated Stokes power. (C) 2000 Optical Society of America [S0740-3224(00)01405-3]. OCIS codes: 140.3550, 190.5890, 190.4870, 190.5940, 190.5650, 190.2640. [References: 14]
机译:在非共振连续拉曼激光器中,H-2的折射率随斯托克斯功率的增加而线性减小,而随泵浦功率的增加则要小得多。折射率变化的主要来源是热的,并且显着大于与拉曼共振相关的色散。基于内部加热的稳态理论模型可以准确地描述观察到的行为,该模型是由非弹性拉曼散射事件引起的。使用该模型,可以针对各种水平的斯托克斯功率预测拉曼腔共振的频率牵引和腔内高斯光束的相位失真。 (C)2000年美国光学学会[S0740-3224(00)01405-3]。 OCIS代码:140.3550、190.5890、190.4870、190.5940、190.5650、190.2640。 [参考:14]

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