首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Atomic transition transfer, field statistics and squeezing of the off-resonant cascade three-level Jaynes-Cummings model with a Kerr medium
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Atomic transition transfer, field statistics and squeezing of the off-resonant cascade three-level Jaynes-Cummings model with a Kerr medium

机译:Kerr介质的非共振级联三能级Jaynes-Cummings模型的原子跃迁转移,场统计和压缩

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摘要

Atomic population dynamics and the non-classical properties of the field in the system consisting of a cascade three-level atom interacting non-resonantly with a single-mode field are investigated in the presence of a Kerr medium. The atom and the field are assumed to be in the upper state and the coherent state initially, respectively. It is found that an atomic transition transfer may occur by varying the initial field intensity under the condition of a reasonably large one-photon detuning. Varying the initial field intensity can also control the field statistics. Quasiprobability distribution Q-function of the field state is also calculate to reveal its relation to the field statistics and normal squeezing effect.
机译:在存在Kerr介质的情况下,研究了由级联三能级原子与单模场非共振相互作用组成的系统中原子的种群动力学和场的非经典性质。最初假定原子和场分别处于上层状态和相干状态。发现在相当大的单光子失谐的条件下,通过改变初始场强可以发生原子跃迁。改变初始场强度还可以控制场统计。还计算了场状态的拟概率分布Q函数,以揭示其与场统计量和正态压缩效应的关系。

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