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Dynamic evolution of double $Lambda$ five-level atom interacting with one-mode electromagnetic cavity field

机译:双$ Lambda $五能级原子与单模电磁腔场相互作用的动态演化

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In this paper, the model describing a double $Lambda$ five-level atom interacting with a single mode electromagnetic cavity field in the (off) non-resonate case is studied. We obtained the constants of motion for the considered model. Also, the state vector of the wave function is given by using the Schr??dinger equation when the atom is initially prepared in its excited state. The dynamical evolutions for the collapse revivals, the antibunching of photons and the field squeezing phenomena are investigated when the field is considered in a coherent state. The influence of detuning parameters on these phenomena is investigated. We noticed that the atoma??field properties are influenced by changing the detuning parameters. The investigation of these aspects by numerical simulations is carried out using the Quantum Toolbox in Python (QuTip).
机译:在本文中,研究了描述在(非)非共振情况下双$ Lambda $五能级原子与单模电磁腔场相互作用的模型。我们获得了所考虑模型的运动常数。同样,当原子最初以激发态制备时,通过使用薛定ding方程给出波函数的状态向量。当场处于相干状态时,研究了塌陷复兴,光子反聚束和场压缩现象的动力学演化。研究了失谐参数对这些现象的影响。我们注意到,改变失谐参数会影响原子场的场特性。使用Python(QuTip)中的Quantum Toolbox对这些方面进行了数值模拟研究。

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