论文标题

在两个连接的微型型腔之间的纠缠状态的产生和传递:分析不同类型的耦合

Generation and transfer of entangled states between two connected microtoroidal cavities: analysis of different types of coupling

论文作者

Sousa, Emilio H. S., Vidiella-Barranco, A., Roversi, J. A.

论文摘要

我们研究了两个不同类型的耦合,即通过桥梁Qubit和ii)通过evanevanevanevanscent场来研究两个耦合的微型型腔之间的纠缠状态和转移。这些腔体支持了两个可能相互作用的反向传播窃窃私语模式(WGM)。我们首先表明,可以在第一个腔的两种模式(腔1)之间以高忠诚度将最大纠结状态转移到第二个腔(腔2)的两种模式(腔2),而与耦合的类型无关。但是,关于最初产品状态的纠缠状态产生的有趣差异;如果通过桥值将腔体耦合,我们表明可以生成一个涉及所有四个腔模式的4党纠缠状态。另一方面,与量子耦合情况下发生的情况相反,可以在不同腔的模式之间产生两分的状态,从初始可分离状态的不同腔模式中,对于与evanescent波相连的腔体。此外,我们表明,可以通过调谐属于同一腔(腔内腔内耦合)之间的相互作用来产生不同腔的传播和反向传播模式之间的不同纠缠状态。同样,这只能通过逃生的波耦合。为了完成工作,我们讨论损失对系统动力学的影响。

We investigate the generation and transfer of entangled states between two coupled microtoroidal cavities considering two different types of couplings, namely i) via a bridge qubit and ii) via evanescent fields. The cavities support two counter-propagating whispering-gallery modes (WGMs) that may also interact with each other. We firstly show that it is possible to transfer, with high fidelity, a maximally entangled state between the two modes of the first cavity (cavity 1) to the two modes of the second cavity (cavity 2), independently of the type of coupling. Interesting differences, though, arise concerning the generation of entangled states from initial product states; if the cavities are coupled via a bridge qubit, we show that it is possible to generate a 4-partite entangled state involving all four cavity modes. On the other hand, contrarily to what happens in the qubit coupling case, it is possible to generate bipartite maximally entangled states between modes of different cavities from initial separable states for cavities coupled by evanescent waves. Besides, we show that different entangled states between the propagating and counter-propagating modes of distinct cavities may be generated by tuning the interaction between modes belonging to the same cavity (intra-cavity couplings). Again, this is possible only for the couplings via evanescent waves. For the completion of our work, we discuss the effects of losses on the dynamics of the system.

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