Jiang Gui-Long, Liu Wen-Qiang, Wei Hai-Rui
Opt Express. 2022 Dec 19;30(26):47836-47846. doi: 10.1364/OE.476342.
Entanglement concentration is a critical technique to prevent degraded fidelity and security in long-distance quantum communication. We propose novel practical entanglement concentration protocols (ECPs) for less-entangled Bell and Greenberger-Horne-Zeilinger states with unknown parameters by solely using simple linear optics. We avoid the need for the post-selection principles or photon-number-resolving detectors to identify the parity-check measurement completely by orchestrating auxiliary time degree of freedom, and the success of ECPs is exactly heralded by the detection signatures without destroying the incident qubits. Additionally, the outting incident photons kept are in the maximally entangled or the less-entangled state, and the success probability can be increased by recycling the latter. The heralded and the basic linear optical elements make our practical ECPs are accessible to experimental investigation with current technology.
纠缠浓缩是防止长距离量子通信中保真度和安全性下降的关键技术。我们提出了新颖的实用纠缠浓缩协议(ECP),用于通过仅使用简单的线性光学来处理具有未知参数的纠缠程度较低的贝尔态和格林伯格-霍恩-泽林格态。我们通过精心安排辅助时间自由度,避免了使用后选择原则或光子数分辨探测器来完全识别奇偶校验测量的需求,并且ECP的成功可以通过检测特征确切宣告,而不会破坏入射量子比特。此外,保留的输出入射光子处于最大纠缠态或纠缠程度较低的状态,并且可以通过回收后者来提高成功概率。宣告式和基本的线性光学元件使得我们的实用ECP能够利用当前技术进行实验研究。