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Approximate transformations of bipartite pure-state entanglement from the majorization lattice

机译:来自多数化格的两部分纯态纠缠的近似变换

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摘要

We study the problem of deterministic transformations of an initial pure entangled quantum state, |ψ〉, into a target pure entangled quantum state, |ϕ〉, by using local operations and classical communication (LOCC). A celebrated result of Nielsen (1999) gives the necessary and sufficient condition that makes this entanglement transformation process possible. Indeed, this process can be achieved if and only if the majorization relation ψ≺ϕ holds, where ψ and ϕ are probability vectors obtained by taking the squares of the Schmidt coefficients of the initial and target states, respectively. In general, this condition is not fulfilled. However, one can look for an approximate entanglement transformation. Vidal et al. (2000) have proposed a deterministic transformation using LOCC in order to obtain a target state |χopt〉 most approximate to |ϕ〉 in terms of maximal fidelity between them. Here, we show a strategy to deal with approximate entanglement transformations based on the properties of the majorization lattice. More precisely, we propose as approximate target state one whose Schmidt coefficients are given by the supremum between ψ and ϕ. Our proposal is inspired on the observation that fidelity does not respect the majorization relation in general. Remarkably enough, we find that for some particular interesting cases, like two-qubit pure states or the entanglement concentration protocol, both proposals are coincident.
机译:我们使用局部运算和经典通信(LOCC)研究了将初始纯纠缠量子态|ψ〉转换为目标纯纠缠量子态| ϕ〉的确定性转换问题。 Nielsen(1999)的著名结果给出了使这种纠缠转换过程成为可能的充分必要条件。确实,只有且仅当主化关系ψ≺ϕ成立时,才能实现此过程,其中ψ和ϕ是分别通过获取初始状态和目标状态的Schmidt系数平方得到的概率向量。通常,不满足此条件。但是,人们可以寻找一种近似的纠缠变换。 Vidal等。 (2000年)提出了一种使用LOCC的确定性变换,以获得目标状态|χopt〉,该状态最接近| ϕ〉。在这里,我们展示了一种基于主化格的属性来处理近似纠缠变换的策略。更准确地说,我们提出其Schmidt系数由ψ和the之间的极值给出的近似目标状态。我们的建议是受以下观察启发的:忠实度通常不尊重主流化关系。足够明显的是,我们发现对于某些特别有趣的情况,例如两个量子位纯态或纠缠集中协议,这两个建议是一致的。

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