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首页> 外文期刊>Physical Review, A >Stability analysis for bad cavity lasers using inhomogeneously broadened spin-1/2 atoms as a gain medium
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Stability analysis for bad cavity lasers using inhomogeneously broadened spin-1/2 atoms as a gain medium

机译:使用不均匀扩大的旋转1/2原子作为增益介质的坏腔激光器的稳定性分析

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摘要

Bad cavity lasers are experiencing renewed interest in the context of active optical frequency standards, due to their enhanced robustness against fluctuations of the laser cavity. The gain medium would consist of narrow-linewidth atoms, either trapped inside the cavity or intersecting the cavity mode dynamically. A series of effects like the atoms finite velocity distribution, atomic interactions, or interactions of realistic multilevel atoms with auxiliary or stray fields can lead to an inhomogeneous broadening of the atomic gain profile. This causes the emergence of unstable regimes of laser operation, characterized by complex temporal patterns of the field amplitude. We study the steady-state solutions and their stability for the metrology-relevant case of a bad cavity laser with spin-1/2 atoms, such as ~(171)Yb, interacting with an external magnetic field. For the stability analysis, we present an efficient method, which can be applied to a broad class of single-mode bad cavity lasers with inhomogeneously broadened multilevel atoms acting as a gain medium.
机译:由于其增强了激光腔波动的鲁棒性,不良腔激光器在主动光学频率标准的背景下正在经历重新兴趣​​。增益介质包括窄线宽原子,无论是捕获在腔内还是动态地交叉。与原子有限速度分布,原子相互作用或具有辅助或杂散场的现实多级原子的相互作用的一系列效果可以导致原子增益轮廓的不均匀扩大。这导致激光操作的不稳定制度的出现,其特征在于场幅度的复杂时间图案。我们研究稳态解决方案及其具有旋转1/2原子的坏腔激光器的计量相关情况的稳定性,例如〜(171)Yb,与外部磁场相互作用。对于稳定性分析,我们提出了一种有效的方法,可以应用于广泛的单模坏腔激光器,其具有不均匀宽的多级原子作为增益介质。

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