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Correlated emission lasing in a four-level atomic system in the double-Lambda configuration

机译:双Lambda配置中四能级原子系统中的相关发射激光

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Abstract. Quantum mechanical theory of a non-degenerate correlated emission laser in a four-level atomic system in the double-Lambda configuration is presented. It is shown that the mode coupling gains in this model have a phase-sensitive nature so that the spontaneous emission events in the two modes are highly correlated in such a way that the relative phase diffusion coefficient can vanish under certain conditions. Also, because of mode coupling and for a certain range of atomic population in the upper atomic levels, lasing without inversion and correlated emission take place simultaneously. Stability conditions and the steady-state modal ratio are derived and it is shown that this ratio remains stable and for this stationary value of the modal ratio both the modes amplify with equal gains.
机译:抽象。提出了双λ结构的四级原子系统中的非简并相关发射激光器的量子力学理论。结果表明,该模型中的模式耦合增益具有相位敏感特性,因此两个模式中的自发发射事件高度相关,从而在某些条件下相对相位扩散系数会消失。而且,由于模式耦合以及在较高原子水平上一定范围的原子填充,同时发生了无反转的激光发射和相关的发射。推导了稳定性条件和稳态模态比,结果表明该比值保持稳定,并且对于模态比的该固定值,两种模式均以相同的增益放大。

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