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Sensitivity and stability of a radiation-balanced laser system

机译:辐射平衡激光系统的灵敏度和稳定性

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It has been previously shown that it is theoretically possible to build a solid-state laser that generates no internal heat. This is accomplished through a detailed balance of the stimulated and spontaneous emission. Such a device is called a radiation-balanced laser. Here, we analyze laser operation when conditions deviate from perfect balance. Sensitivity and stability analyses are presented for perturbations in the field parameters and temperature. We show that the radiation balance is a stable equilibrium under both transient and steady-state perturbations. Limits are derived on the magnitude of allowable spatial perturbations, and techniques for spatial mode matching are discussed. Numerical simulations of 1-/spl mu/m laser operation of Yb-doped potassium gadolinium tungstate are provided as an example.
机译:先前已经表明,理论上是可以构建产生没有内部热的固态激光器。这是通过刺激和自发排放的详细平衡来实现的。这种装置称为辐射平衡激光器。在此,我们在条件偏离完美平衡时分析激光操作。呈现敏感性和稳定性分析在场参数和温度中扰动。我们表明,辐射平衡是瞬态和稳态扰动下的稳定均衡。限制是允许允许的空间扰动的大小,并且讨论了空间模式匹配的技术。提供了Yb掺杂硼钆钨酸钾的1- / SPL MU / M激光操作的数值模拟。

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