Chen Lei, Xiu Xiao-Ming, Dong Li, Liu Nan-Nan, Shen Cai-Peng, Zhang Shou, Chen Shu, Su Shi-Lei
Opt Lett. 2022 May 1;47(9):2262-2265. doi: 10.1364/OL.458723.
Several schemes are proposed to realize the conversion of photonic polarized-entangled Greenberger-Horne-Zeilinger state to Knill-Laflamme-Milburn state in decoherence-free subspace (DFS) via weak cross-Kerr nonlinearity and X-quadrature homodyne measurement with high fidelity. DFS is introduced to decrease the decoherence effect caused by the coupling between the system and the environment. Optimizations to improve the success rate and utilization of residual states are further investigated. This study indicates important applications for quantum information processing in the future.
提出了几种方案,以通过弱交叉克尔非线性和具有高保真度的X正交零差测量,在无退相干子空间(DFS)中将光子极化纠缠的格林伯格-霍恩-泽林格态转换为基尔-拉弗拉梅-米尔本态。引入DFS以降低系统与环境之间耦合引起的退相干效应。进一步研究了提高成功率和剩余态利用率的优化方法。该研究表明了其在未来量子信息处理中的重要应用。