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实验性单拷贝纠缠蒸馏

Experimental Single-Copy Entanglement Distillation.

作者信息

Ecker Sebastian, Sohr Philipp, Bulla Lukas, Huber Marcus, Bohmann Martin, Ursin Rupert

机构信息

Institute for Quantum Optics and Quantum Information (IQOQI), Austrian Academy of Sciences, Boltzmanngasse 3, 1090 Vienna, Austria.

Vienna Center for Quantum Science and Technology (VCQ), Faculty of Physics, University of Vienna, Boltzmanngasse 5, 1090 Vienna, Austria.

出版信息

Phys Rev Lett. 2021 Jul 23;127(4):040506. doi: 10.1103/PhysRevLett.127.040506.

Abstract

The phenomenon of entanglement marks one of the furthest departures from classical physics and is indispensable for quantum information processing. Despite its fundamental importance, the distribution of entanglement over long distances through photons is unfortunately hindered by unavoidable decoherence effects. Entanglement distillation is a means of restoring the quality of such diluted entanglement by concentrating it into a pair of qubits. Conventionally, this would be done by distributing multiple photon pairs and distilling the entanglement into a single pair. Here, we turn around this paradigm by utilizing pairs of single photons entangled in multiple degrees of freedom. Specifically, we make use of the polarization and the energy-time domain of photons, both of which are extensively field tested. We experimentally chart the domain of distillable states and achieve relative fidelity gains up to 13.8%. Compared to the two-copy scheme, the distillation rate of our single-copy scheme is several orders of magnitude higher, paving the way towards high-capacity and noise-resilient quantum networks.

摘要

纠缠现象是与经典物理学最背离的现象之一,也是量子信息处理不可或缺的部分。尽管其具有根本重要性,但不幸的是,通过光子进行长距离纠缠分布会受到不可避免的退相干效应的阻碍。纠缠纯化是一种通过将稀释的纠缠集中到一对量子比特中来恢复其质量的方法。按照惯例,这是通过分发多个光子对并将纠缠纯化到单个光子对中来实现的。在这里,我们通过利用在多个自由度上纠缠的单光子对扭转了这种范式。具体来说,我们利用光子的偏振和能量 - 时间域,这两者都经过了广泛的现场测试。我们通过实验绘制了可纯化状态的范围,并实现了高达13.8%的相对保真度增益。与双拷贝方案相比,我们的单拷贝方案的纯化率高出几个数量级,为高容量和抗噪声量子网络铺平了道路。

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