论文标题

纠缠可检测性的基本限制

Fundamental Limitation on the Detectability of Entanglement

论文作者

Liu, Pengyu, Liu, Zhenhuan, Chen, Shu, Ma, Xiongfeng

论文摘要

纠缠检测在量子信息科学和量子多体物理学中至关重要。已经证明,几乎肯定存在纠缠的量子状态,而有效的纠缠标准的实现通常会消耗指数资源,而有效的标准通常在没有先验知识的情况下表现较差。这一事实意味着纠缠的可检测性可能存在基本限制。在这项工作中,我们将这一限制形式化为通过系统方法来评估纠缠标准的检测能力的纠缠标准的效率和有效性之间的基本权衡。对于与环境相连的系统,我们证明,在限制在单拷贝操作的情况下,任何纠缠标准都需要指数级可观察到有效地检测纠缠。否则,标准的检测能力将双重衰减。此外,如果允许多拷贝的关节测量值,则可以指数改进纠缠检测的有效性,这意味着在纠缠检测问题中具有量子优势。

Entanglement detection is essential in quantum information science and quantum many-body physics. It has been proved that entanglement exists almost surely for a random quantum state, while the realizations of effective entanglement criteria usually consume exponential resources, and efficient criteria often perform poorly without prior knowledge. This fact implies a fundamental limitation might exist in the detectability of entanglement. In this work, we formalize this limitation as a fundamental trade-off between the efficiency and effectiveness of entanglement criteria via a systematic method to theoretically evaluate the detection capability of entanglement criteria. For a system coupled to an environment, we prove that any entanglement criterion needs exponentially many observables to detect the entanglement effectively when restricted to single-copy operations. Otherwise, the detection capability of the criterion will decay double-exponentially. Furthermore, if multi-copy joint measurements are allowed, the effectiveness of entanglement detection can be exponentially improved, which implies a quantum advantage in entanglement detection problems.

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