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Entanglement of a damped non-degenerate lozenge- type atom interacting nonlinearly with a single-mode cavity

机译:阻尼的非简并菱形型原子与单模腔非线性相互作用的纠缠

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摘要

In this paper, we investigate the entanglement of a non-degenerate. lozenge-type four-level atom interacting with a single-mode cavity field with multi-photon transitions in the intensity-dependent (atom-field) coupling regime. We consider the non-degenerate atom in the intermediate levels and with different detunings between the frequencies of the atom and quantized light field. The decay of the atom from the topmost state to the two intermediate states and also that from the two intermediate states to the bottom state are taken into account. In spite of the fact that the system seems to be complicated, the explicit form of the state vector of the entire system is analytically obtained by using the Laplace transform technique. Then, the entanglement between the atom and field is evaluated with the help of I concurrence measure. The effects of intensity-dependent coupling, decay rates, multi-photon processes and detuning parameters on the concurrence are numerically analyzed, in detail. The results indicate that, the larger the decay coefficients, the more rapid the entanglement decrement between the atom and the field. The intensity-dependent coupling enhances the entanglement between atom and field in most of the interaction times. Furthermore, the degeneracy of the intermediate atomic levels in the presence of decay parameters increases the asymptotic value of the concurrence in the linear and nonlinear regimes. Finally, the amount of entanglement between atom and field in the presence of decay parameters for two-photon transition is greater than that for the one-photon transition.
机译:在本文中,我们研究了一个非简并的纠缠。菱形四能级原子与强度依赖(原子场)耦合机制中具有多光子跃迁的单模腔场相互作用。我们考虑处于中间水平的非简并原子,并且原子的频率与量化光场之间具有不同的失谐。考虑了原子从最高状态到两个中间状态的衰减以及从两个中间状态到底部状态的衰减。尽管该系统看起来很复杂,但是通过使用Laplace变换技术可以解析地获得整个系统状态向量的显式形式。然后,借助I并发度量,评估原子与场之间的纠缠。数值分析了强度依赖性耦合,衰减率,多光子过程和失谐参数对并发的影响。结果表明,衰减系数越大,原子与电场之间的纠缠衰减越快。在大多数相互作用时间中,强度依赖的耦合增强了原子与场之间的纠缠。此外,在存在衰变参数的情况下,中间原子能级的简并性增加了线性和非线性状态下并发的渐近值。最后,在存在两个光子跃迁的衰减参数的情况下,原子与场之间的纠缠量大于一个光子跃迁的纠缠量。

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