Santra Siddhartha, Malinovsky Vladimir S
US Army Research Laboratory, Adelphi, Maryland 20783, USA.
J Chem Phys. 2021 Apr 7;154(13):134108. doi: 10.1063/5.0044389.
Auxiliary pure quantum entangled states shared between two parties can act as catalysts in bipartite entanglement transformations. The participation of a catalyst state in the transformation can enhance its success probability. We consider transformations involving entanglement concentration of a finite number of copies of arbitrary two-qubit pure states into a single copy of a maximally entangled two-qubit pure state using bipartite local quantum operations and classical communication aided by a catalyst state. We show the enhancement of success probabilities of the catalyst-assisted procedure compared to the case where no catalysts are used. The optimal two-qubit catalyst and the maximum probability of the transformation using such catalysts can be obtained analytically. The enhancement of concentration success probability using catalysts of higher dimensions is demonstrated numerically. Finally, catalyst aided strategies for obtaining multiple maximally entangled two-qubit states are discussed.
两方共享的辅助纯量子纠缠态可在两方纠缠变换中充当催化剂。催化剂态参与变换可提高其成功概率。我们考虑使用由催化剂态辅助的两方局部量子操作和经典通信,将任意两个量子比特纯态的有限个副本的纠缠浓缩为单个最大纠缠两个量子比特纯态副本的变换。我们展示了与不使用催化剂的情况相比,催化剂辅助过程的成功概率有所提高。可以通过解析方法获得最优的两个量子比特催化剂以及使用此类催化剂进行变换的最大概率。通过数值方法证明了使用更高维催化剂可提高浓缩成功概率。最后,讨论了用于获得多个最大纠缠两个量子比特态的催化剂辅助策略。