论文标题

三级冷原子激光器的平均场浮标理论

Mean-field Floquet theory for a three-level cold-atom laser

论文作者

Harmon, Gage W., Reilly, Jarrod T., Holland, Murray J., Jäger, Simon B.

论文摘要

我们为在$ v $ - 配置中的三个内部级别的原子的激光方案提供了一个理论描述,并与光腔相互作用。使用$ V $级别的系统允许在偶极子 - 弗孔过渡上维持有效的闭合激光循环,而无需不连贯的降压。通过利用额外的偶极允许的过渡,这是可能的。我们通过对非射压溶液进行稳定性分析来确定激光阈值和发射频率。在激光方案中,我们使用平均场浮子法(MFFM)来计算激光强度和发射频率。该MFFM预测激光转变将伴随着在总场的单个傅立叶组件中破坏连续的$ u(1)$对称性。此外,我们使用MFFM来得出可突出该系统非线性性质的可动光和非射压解决方案。然后,我们通过研究滞后时的滞后来测试双疗法,当时在整个阈值和背部逐渐逐渐横跨外部参数。此外,我们还将平均场结果与二阶累积方法进行比较。这项工作提供了简单的方法,可以理解在狭窄线转换的冷原子激光器中发生的复杂物理。

We present a theoretical description for a lasing scheme for atoms with three internal levels in a $V$-configuration and interacting with an optical cavity. The use of a $V$-level system allows for an efficient closed lasing cycle to be sustained on a dipole-forbidden transition without the need for incoherent repumping. This is made possible by utilizing an additional dipole-allowed transition. We determine the lasing threshold and emission frequency by performing a stability analysis of the non-lasing solution. In the lasing regime, we use a mean-field Floquet method (MFFM) to calculate the lasing intensity and emission frequency. This MFFM predicts the lasing transition to be accompanied by the breaking of a continuous $U(1)$ symmetry in a single Fourier component of the total field. In addition, we use the MFFM to derive bistable lasing and non-lasing solutions that highlight the non-linear nature of this system. We then test the bistability by studying hysteresis when slowly ramping external parameters across the threshold and back. Furthermore, we also compare our mean-field results to a second-order cumulant approach. The work provides simple methods for understanding complex physics that occur in cold atom lasers with narrow line transitions.

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