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Theory and measurement of the soliton self-frequency shift and efficiency in optical microcavities

机译:光学微腔中孤子自频移和效率的理论与测量

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Dissipative Kerr cavity solitons experience a so-called self-frequency shift (SFS) as a result of Raman interactions. The frequency shift has been observed in several microcavity systems. The Raman process has also been shown numerically to influence the soliton pumping efficiency. Here, a perturbed Lagrangian approach is used to derive simple analytical expressions for the SFS and the soliton efficiency. The predicted dependences of these quantities on soliton pulse width are compared with measurements in a high-Q silica microcavity. The Raman time constant in silica is also inferred. Analytical expressions for the Raman SFS and soliton efficiency greatly simplify the prediction of soliton behavior over a wide range of microcavity platforms. (C) 2016 Optical Society of America
机译:由于拉曼相互作用,耗散的Kerr腔孤子经历了所谓的自频移(SFS)。在几个微腔系统中已经观察到了频移。拉曼过程也已在数值上显示出影响孤子抽运效率。在这里,使用扰动的拉格朗日方法来推导SFS和孤子效率的简单解析表达式。将这些量对孤子脉冲宽度的预测依赖性与高Q二氧化硅微腔中的测量结果进行了比较。还推导了二氧化硅中的拉曼时间常数。拉曼SFS和孤子效率的解析表达式大大简化了在各种微腔平台上孤子行为的预测。 (C)2016美国眼镜学会

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