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Modeling Analysis of Optical Bistability in Continuous-Wave Operation of Quasi-Three-Level Lasers

机译:准三能级激光器连续波工作中的光学双稳态建模分析

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摘要

In this paper, an analytical model is developed for a quasi-three-level laser exhibiting optical bistability in its continuous-wave operation. This model gives the necessary conditions for the formation of such bistability, which are directly connected to measurable parameters of the laser medium, and reveals most of the primary characteristics of optical bistablity demonstrated experimentally with quasi-three-lasers based on Yb-doped vanadates. The principal parameters characterizing such bistability, xthmathchar"702D up, xthmathchar"702D down, Δxbr, Ithmathchar"702D up, and Ithmathchar"702D down, can be expressed explicitly in terms of two normalized parameters, xa = 2αa0pa/δ and f = Isat,a/Isat,m. To confirm its validity and demonstrate its usefulness, this model is applied to a typical Yb:LuVO4 laser displaying sizable optical bistability in its operation, giving very good agreement between theoretical prediction and experimental measurement.
机译:本文为准三能级激光器在连续波工作中表现出光学双稳性建立了一个解析模型。该模型为形成这种双稳性提供了必要条件,这些条件直接与可测量的激光介质参数相关,并揭示了用掺Yb掺杂钒酸盐的准三激光器实验证明的光学稳性的大多数主要特征。可以用两个归一化参数xa =2αa0pa/δ和f = Isat明确表示表征这种双稳性的主要参数xthmathchar“ 702D up,xthmathchar” 702D down,Δxbr,Ithmathchar“ 702D up和Ithmathchar” 702D down。 ,a / Isat,m。为了确认其有效性并证明其实用性,该模型被应用于典型的Yb:LuVO4激光器,在其操作中显示出相当大的光学双稳性,从而在理论预测和实验测量之间取得了很好的一致性。

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