Theoretical study of solid state losers

V. Zehnlé
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引用次数: 0

Abstract

Coupled solid state laser systems belong to the wide family of nonlinear coupled oscillators. These systems are known to exhibit a great number of rich and complex dynamical behaviors: chaos, partial synchronization, periodic behavior, spiking. When the coupling strength is high enough, all the oscillators adopt a common and well defined phase relationship (phase locking). This state of "collective" order is very important since phase locked lasers are promising candidates for the delivering of high power coherent output. Starting from Maxwell-Bloch equations, we develop a theoretical model for a set of coupled monomode lasers in a single crystal. We adopt a semi-classical description and obtain a set of equations describing the temporal evolution of laser field amplitude and population inversion.
固体减震器的理论研究
耦合固体激光系统属于广义的非线性耦合振荡器。已知这些系统表现出大量丰富而复杂的动力学行为:混沌、部分同步、周期行为、尖峰。当耦合强度足够高时,所有振子都采用共同且定义良好的相位关系(锁相)。这种“集体”顺序的状态非常重要,因为锁相激光器是提供高功率相干输出的有希望的候选者。从麦克斯韦-布洛赫方程出发,建立了单晶耦合单模激光器的理论模型。采用半经典描述,得到了一组描述激光场振幅随时间变化的方程和总体反演方程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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