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Dissipative entanglement swapping in the presence of detuning and Kerr medium: Bell state measurement method

机译:腐蚀缠结在静置和烤架介质存在下交换:钟状态测量方法

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In this paper, we investigate the possibility of entanglement swapping between two independent nonperfect cavities consisting of an atom with finite lifetime of atomic levels (as two independent sources of dissipation), which interacts with a quantized electromagnetic field in the presence of detuning and Kerr medium. In fact, there is no direct interaction between the two atoms, therefore, no entanglement exists between them. We use the Bell state measurement performed on the photons leaving the cavities to swap the entanglement stored between the atom-fields in each cavity into atom-atom. Our motivation comes from the fact that two-qubit entangled states are of great interest for quantum information science and technologies. We discuss the effect of the initial state of the system, the detuning parameter, the Kerr medium and the two dissipation sources on the swapped entanglement to atom-atom. We interestingly find that when the atomic decay rates and photonic leakages from the cavities are equal, our system behaves as an ideal system with no dissipation. Our results show that it is possible to create a long-living atom-atom maximally entangled state in the presence of Kerr effect and dissipation; we determine these conditions in detail and also establish the final atom-atom Bell state.
机译:在本文中,我们研究了由具有有限寿命的原子水平(作为两个独立的耗散源组成的Atom组成的缠绕交换的可能性,其在静物和克尔媒体存在下与量化电磁场相互作用。 。事实上,两个原子之间没有直接的相互作用,因此,它们之间没有存在纠缠。我们使用在光子上执行的钟状态测量,使空腔换流在每个空腔中的原子场中的缠结转换成原子原子。我们的动机来自,两个毒品纠缠的国家对量子信息科学和技术有益。我们讨论了系统的初始状态,抗谐率,克尔介质和两种耗散源对原子原子的初始状态的影响。我们有趣的是发现当从腔腔的原子衰减率和光子泄漏相等时,我们的系统表现为理想的系统,没有耗散。我们的研究结果表明,在克尔效应和耗散情况下,可以在存在最大缠结状态的长生原子原子;我们详细确定了这些条件,并建立了最终的原子原子贝尔状态。

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