论文标题

量子纠缠的成本简化了

Cost of quantum entanglement simplified

论文作者

Wang, Xin, Wilde, Mark M.

论文摘要

量子纠缠是量子信息处理中的关键物理资源,它允许执行基本的量子任务,例如传送和量子密钥分布,这在古典世界中是不可能的。自从量子信息理论的兴起以来,以理论上有意义的方式量化纠缠的纠缠一直是一个开放的问题。特别是,每个先前定义的纠缠度量具有精确的信息理论含义是有效计算的,或者如果有效地计算,则不知道它具有精确的信息理论含义。在这封信中,我们通过引入纠缠措施来应对这一挑战,该措施具有精确的信息理论含义,因为当允许两个遥远的当事方执行完全保留部分转置积极性的量子操作时,准备纠缠状态所需的确切成本。此外,这种纠缠度量可以通过半决赛程序有效地计算,并且具有许多有用的属性,例如添加性和忠诚。我们的结果将关键的见解带入了任意量子状态的基本纠缠结构,可以直接用于评估和量化量子物体实验中产生的纠缠。

Quantum entanglement is a key physical resource in quantum information processing that allows for performing basic quantum tasks such as teleportation and quantum key distribution, which are impossible in the classical world. Ever since the rise of quantum information theory, it has been an open problem to quantify entanglement in an information-theoretically meaningful way. In particular, every previously defined entanglement measure bearing a precise information-theoretic meaning is not known to be efficiently computable, or if it is efficiently computable, then it is not known to have a precise information-theoretic meaning. In this Letter, we meet this challenge by introducing an entanglement measure that has a precise information-theoretic meaning as the exact cost required to prepare an entangled state when two distant parties are allowed to perform quantum operations that completely preserve the positivity of the partial transpose. Additionally, this entanglement measure is efficiently computable by means of a semidefinite program, and it bears a number of useful properties such as additivity and faithfulness. Our results bring key insights into the fundamental entanglement structure of arbitrary quantum states, and they can be used directly to assess and quantify the entanglement produced in quantum-physical experiments.

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