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Realizing probabilistic identification and cloning of quantum states via universal quantum logic gates

机译:通过通用量子逻辑门实现概率识别和量子态克隆

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摘要

Probabilistic quantum cloning and identifying machines can be constructed via unitary-reduction processes [Duan and Guo, Phys. Rev. Lett. 80, 4999 (1998)]. Given the cloning (identifying) probabilities, we derive an explicit representation of the unitary evolution and corresponding Hamiltonian to realize probabilistic cloning (identification). The logic networks are obtained by decomposing the unitary representation into universal quantum logic operations. The robustness of the networks is also discussed. Our method is suitable for a k-partite system, such as quantum computer. and may be generalized to general state-dependent cloning and identification.
机译:概率量子克隆和鉴定机器可以通过单一还原过程来构建[Duan and Guo,Phys。牧师80,4999(1998)]。给定克隆(识别)概率,我们可以得出the态演化的显式表示形式和相应的哈密顿量,以实现概率克隆(识别)。通过将the表示分解为通用量子逻辑运算来获得逻辑网络。还讨论了网络的健壮性。我们的方法适用于k部分系统,例如量子计算机。并可以推广到一般的状态依赖性克隆和鉴定。

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