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    题名 作者 年代 出处 被引量
1Measurement-based entanglement purification for entangled coherent states显示文摘The entangled coherent states(ECSs)have been widely used to realize quantum information processing tasks.However,the ECSs may suffer from photon loss and decoherence due to the inherent noise in quantum channel,which may degrade the fidelity of ECSs.To overcome these obstacles,we present a measurement-based entanglement purification protocol(MBEPP)for ECSs to distill some highquality ECSs from a large number of low-quality copies.We first show the principle of this MBEPP without considering the photon loss.After that,we prove that this MBEPP is feasible to correct the error resulted from the photon loss.Additionally,this MBEPP only requires to operate the Bell state measurement without performing local two-qubit gates on the noisy pairs and the purified high-quality ECSs can be preserved for other applications.This MBEPP may have application potential in the implementation of long-distance quantum communication.Pei-Shun Yan Lan Zhou Wei Zhong Yu-Bo Sheng 2022Frontiers of physics2022,17,2:1
2Remote preparation for single-photon state in two degrees of freedom with hyper-entangled states显示文摘Remote state preparation(RSP)provides a useful way of transferring quantum information between two distant nodes based on the previously shared entanglement.In this paper,we study RSP of an arbitrary single-photon state in two degrees of freedom(DoFs).Using hyper-entanglement as a shared resource,our first goal is to remotely prepare the single-photon state in polarization and frequency DoFs and the second one is to reconstruct the single-photon state in polarization and time-bin DoFs.In the RSP process,the sender will rotate the quantum state in each DoF of the photon according to the knowledge of the state to be communicated.By performing a projective measurement on the polarization of the sender’s photon,the original single-photon state in two DoFs can be remotely reconstructed at the receiver’s quantum systems.This work demonstrates a novel capability for longdistance quantum communication.Mei-Yu Wang Fengli Yan Ting Gao 2021Frontiers of physics2021,16,4:0
3基于单边微腔量子点耦合系统的极化纠缠浓缩显示文摘量子纠缠是实现量子信息处理任务的重要资源,一些在经典领域中无法实现的任务,可以借助量子纠缠来完成.然而,纠缠态在噪声的作用下会发生退相干,进而变成非最大纠缠态或混态,不再能完成预定任务.纠缠浓缩是从非最大纠缠态中提取最大纠缠态的过程.我们提出两个非最大纠缠Bell态纠缠浓缩方案,一个是未知系数非最大纠缠Bell态纠缠浓缩方案,另一个是已知系数非最大纠缠Bell态纠缠浓缩方案.方案中利用量子点微腔耦合系统来实现光子与光子之间的非线性相互作用,进而可以通过分级浓缩的方法提高浓缩方案的成功概率.两个方案都可以推广为多光子非最大纠缠GHZ态的纠缠浓缩.董莉 莫晓成 杨子龙 刘思彤 吕柳 修晓明 2022渤海大学学报(自然科学版)2022,43,1:0
4Deterministic and complete hyperentangled Bell states analysis assisted by frequency and time interval degrees of freedom显示文摘Hyperentangled Bell states analysis(HBSA)is an essential building block for certain hyper-parallel quantum information processing.We propose a complete and deterministic HBSA scheme encoded in spatial and polarization degrees of freedom(DOFs)of two-photon system assisted by a fixed frequency-based entanglement and a time interval DOF.The parity information the spatial-based and polarization-based hyper-entanglement can be distinguished by the distinct time intervals of the photon pairs,and the phase information can be distinguished by the detection signature.Compared with previous schemes,the number of the auxiliary entanglements is reduced from two to one by introducing time interval DOF.Moreover,the additional frequency and time interval DOFs suffer less from the collective channel noise.Xin-Jie Zhou Wen-Qiang Liu Hai-Rui Wei Yan-Bei Zheng Fang-Fang Du 2022Frontiers of physics2022,17,5:0
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