Li Chunyan, Kong Rong, Ren Baocang, Deng Meiqiu, Deng Fuguo
Department of Physics, National University of Defense Technology, Changsha 410073, China.
Hunan Key Laboratory of Mechanism and Technology of Quantum Information, Changsha 410073, China.
Entropy (Basel). 2023 Apr 24;25(5):705. doi: 10.3390/e25050705.
It has been found that logic-qubit entanglement has great potential for applications in quantum communication and quantum networks in recent years. However, along with the effects of noise and decoherence, the fidelity of the communication transmission can be greatly reduced. In this paper, we investigate the entanglement purification of logic bit-flip error and phase-flip error in polarization logic-qubit entanglement based on the parity-check measurement (PCM) gate, which is constructed by the cross-Kerr nonlinearity and used to distinguish the parity information of two-photon polarization states. The probability of entanglement purification is higher than the scheme using the linear optical method. Moreover, the quality of logic-qubit entangled states can be improved by a cyclic purification process. This entanglement purification protocol will be useful in the future when faced with long-distance communication with logic-qubit entanglement states.
近年来发现,逻辑量子比特纠缠在量子通信和量子网络中具有巨大的应用潜力。然而,随着噪声和退相干效应的出现,通信传输的保真度会大大降低。在本文中,我们基于奇偶校验测量(PCM)门研究了偏振逻辑量子比特纠缠中逻辑比特翻转错误和相位翻转错误的纠缠纯化,该门由交叉克尔非线性构建,用于区分双光子偏振态的奇偶信息。纠缠纯化的概率高于使用线性光学方法的方案。此外,通过循环纯化过程可以提高逻辑量子比特纠缠态的质量。当未来面临与逻辑量子比特纠缠态的长距离通信时,这种纠缠纯化协议将很有用。