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Analysis of Entanglement Measures and LOCC Maximized Quantum Fisher Information of General Two Qubit Systems

机译:一般两个量子位系统的纠缠测度和LOCC最大化量子Fisher信息分析

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摘要

Entanglement has been studied extensively for unveiling the mysteries of non-classical correlations between quantum systems. In the bipartite case, there are well known measures for quantifying entanglement such as concurrence, relative entropy of entanglement (REE) and negativity, which cannot be increased via local operations. It was found that for sets of non-maximally entangled states of two qubits, comparing these entanglement measures may lead to different entanglement orderings of the states. On the other hand, although it is not an entanglement measure and not monotonic under local operations, due to its ability of detecting multipartite entanglement, quantum Fisher information (QFI) has recently received an intense attraction generally with entanglement in the focus. In this work, we revisit the state ordering problem of general two qubit states. Generating a thousand random quantum states and performing an optimization based on local general rotations of each qubit, we calculate the maximal QFI for each state. We analyze the maximized QFI in comparison with concurrence, REE and negativity and obtain new state orderings. We show that there are pairs of states having equal maximized QFI but different values for concurrence, REE and negativity and vice versa.
机译:纠缠已被广泛研究,以揭示量子系统之间非经典相关性的奥秘。在二分情况下,存在用于量化纠缠的众所周知的措施,例如并发,纠缠的相对熵(REE)和负性,这些措施无法通过本地操作来增加。发现对于两个量子位的非最大纠缠态的集合,比较这些纠缠量度可能会导致状态的纠缠顺序不同。另一方面,尽管它不是纠缠量度并且在本地操作下也不单调,但是由于其能够检测多部分纠缠,量子费舍尔信息(QFI)最近受到了普遍的关注,并且受到了纠缠的强烈关注。在这项工作中,我们将回顾一般两个量子位状态的状态排序问题。生成一千个随机量子状态并基于每个量子位的局部一般旋转执行优化,我们计算每个状态的最大QFI。我们分析了与并发,REE和否定性相比的最大化QFI,并获得了新的状态顺序。我们表明,存在成对的状态具有相等的最大化QFI,但是并发,REE和负性值不同,反之亦然。

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