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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Theory of excess noise in unstable resonator lasers - art. no. 053808
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Theory of excess noise in unstable resonator lasers - art. no. 053808

机译:不稳定谐振腔激光器中多余噪声的理论-艺术。没有。 053808

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摘要

We theoretically investigate the quantum dynamics of an unstable resonator laser. Compared to a stable cavity laser of equal gain and loss it exhibits a K-fold enhanced linewidth. This excess noise factor K is a measure of the nonorthogonality of the resonator eigenmodes and amounts to an enlargement of the quantum vacuum fluctuations. Using a quantum treatment starting from first principles based on the nonorthogonal eigenmodes, we put previous theoretical predictions onto a more firm ground. While we find a position-dependent enhancement of the spontaneous emission rate into an empty mode of only rootK, the constructive quantum interference of the spontaneous emission with a single oscillating mode lets the Petermann excess noise factor K reappear in the phase diffusion (laser linewidth). Hence locally enhanced spontaneous emission as well as noise enhanced by interference (amplified spontaneous emission) play an equal role in the origin of excess noise. [References: 31]
机译:我们从理论上研究了不稳定谐振腔激光器的量子动力学。与具有相同增益和损耗的稳定腔激光器相比,它的线宽提高了K倍。该过量噪声因子K是谐振器本征模的非正交性的量度,并且等于量子真空波动的增大。使用从基于非正交本征模的第一原理开始的量子处理,我们将先前的理论预测放在了更牢固的基础上。虽然我们发现自发发射率的依赖于位置的增强变为仅存在rootK的空模式,但自发发射的具有单振荡模式的相长量子干涉使Petermann多余噪声因子K重新出现在相扩散(激光线宽)中。因此,局部增强的自发辐射以及由于干扰而增强的噪声(放大的自发辐射)在产生过量噪声中起着同等作用。 [参考:31]

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