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Stokes-Anti-Stokes Iterative Resonator Method for Modeling Raman Lasers

机译:用于拉曼激光器建模的斯托克斯-反斯托克斯迭代谐振器方法

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摘要

We present a novel modeling method to describe the steady-state and transient regimes of a continuous-wave pumped Raman laser emitting both Stokes and anti-Stokes photons. Our so-called "Stokes-anti-Stokes iterative resonator method" evaluates for every half round-trip time the longitudinal distribution of the intracavity pump, Stokes and anti-Stokes fields propagating in forward and backward directions. Although this Stokes-anti-Stokes iterative resonator method is widely applicable, its most important asset resides in its ability to accurately model Raman lasers that feature cavity enhancement of the pump power and that emit both Stokes and anti-Stokes photons. Important here is that our modeling method correctly incorporates the longitudinal intracavity field distributions, the generation of anti-Stokes photons, and the interference effects between incident and intracavity pump fields, and that it describes not only the lasers' steady-state operation but also their transient characteristics. We demonstrate for both a hydrogen-based and a silicon-based Raman laser with pump cavity enhancement that the Stokes-anti-Stokes iterative resonator method performs better than the modeling methods presently used for these categories of Raman lasers. Finally, to demonstrate the potentialities of our modeling method, we numerically simulate, for the first time according to our knowledge, the anti-Stokes emission generated by a silicon-based Raman laser
机译:我们提出了一种新颖的建模方法来描述连续波泵浦拉曼激光器发射斯托克斯和反斯托克斯光子的稳态和瞬态状态。我们所谓的“斯托克斯-反斯托克斯迭代谐振器方法”每半个往返时间就评估腔内泵,斯托克斯和反斯托克斯磁场在前后方向上传播的纵向分布。尽管这种Stokes-Anti-Stokes迭代谐振器方法得到广泛应用,但其最重要的资产在于其能够对拉曼激光器进行精确建模的能力,该激光器具有增强泵浦功率并发射Stokes和Anti-Stokes光子的特征。在此重要的是,我们的建模方法正确地结合了纵向腔内场分布,反斯托克斯光子的产生以及入射腔和腔内泵浦场之间的干涉效应,不仅描述了激光器的稳态工作,而且还描​​述了激光器的稳态工作。瞬态特性。对于具有泵浦腔增强功能的氢基和硅基拉曼激光器,我们都证明了Stokes-Anti-Stokes迭代谐振器方法的性能优于目前用于这些类型的拉曼激光器的建模方法。最后,为了展示我们的建模方法的潜力,我们根据我们的知识首次对硅基拉曼激光器产生的反斯托克斯发射进行了数值模拟

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