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Remote interactions between two d-dimensional distributed quantum systems: nonlocal generalized quantum control-NOT gate and entanglement swapping

机译:二维三维分布式量子系统之间的远程相互作用:非局部广义量子控制-NOT门和纠缠交换

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摘要

We present a systematic simple method to implement a generalized quantum control-NOT (CNOT) gate on two d-dimensional distributed systems. First, we show how the nonlocal generalized quantum CNOT gate can be implemented with unity fidelity and unity probability by using a maximally entangled pair of qudits as a quantum channel. We also put forward a scheme for probabilistically implementing the nonlocal operation with unity fidelity by employing a partially entangled qudit pair as a quantum channel. Analysis of the scheme indicates that the use of partially entangled quantum channel for implementing the nonlocal generalized quantum CNOT gate leads to the problem of 'the general optimal information extraction'. We also point out that the nonlocal generalized quantum CNOT gate can be used in the entanglement swapping between particles belonging to distant users in a communication network and distributed quantum computer.
机译:我们提出了一个系统的简单方法,以在二维分布式系统上实现广义量子控制-NOT(CNOT)门。首先,我们展示如何通过使用最大纠缠对对作为量子通道,以单位保真度和单位概率实现非局部广义量子CNOT门。我们还提出了一种方案,通过采用部分纠缠的奎迪特对作为量子通道,以统一的保真度概率地实现非局部运算。对方案的分析表明,使用部分纠缠的量子通道来实现非局部广义量子CNOT门会导致“一般的最优信息提取”问题。我们还指出,非局部广义量子CNOT门可用于通信网络和分布式量子计算机中属于远程用户的粒子之间的纠缠交换。

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