多方
计算机科学
量子退相干
贝尔州
量子网络
量子计算机
格林伯格-霍恩-泽林格州
量子位元
国家(计算机科学)
理论计算机科学
分布式计算
量子
计算机网络
量子力学
W州
算法
物理
量子纠缠
作者
Sébastian de Bone,Runsheng Ouyang,Kenneth Goodenough,David Elkouss
出处
期刊:Cornell University - arXiv
日期:2020-10-23
被引量:4
摘要
The distribution of high-quality Greenberger-Horne-Zeilinger (GHZ) states is at the heart of many quantum communication tasks, ranging from extending the baseline of telescopes to secret sharing. They also play an important role in error-correction architectures for distributed quantum computation, where Bell pairs can be leveraged to create an entangled network of quantum computers. We investigate the creation and distillation of GHZ states out of non-perfect Bell pairs over quantum networks. In particular, we introduce a heuristic dynamic programming algorithm to optimize over a large class of protocols that create and purify GHZ states. All protocols considered use a common framework based on measurements of non-local stabilizer operators of the target state (i.e., the GHZ state), where each non-local measurement consumes another (non-perfect) entangled state as a resource. The new protocols outperform previous proposals for scenarios without decoherence and local gate noise. Furthermore, the algorithms can be applied for finding protocols for any number of parties and any number of entangled pairs involved.
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