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Experimental demonstration of entanglement-enabled universal quantum cloning in a circuit

机译:循环中启用纠缠通用量子克隆的实验演示

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No-cloning theorem forbids perfect cloning of an unknown quantum state. A universal quantum cloning machine (UQCM), capable of producing two copies of any input qubit with the optimal fidelity, is of fundamental interest and has applications in quantum information processing. This is enabled by delicately tailored nonclassical correlations between the input qubit and the copying qubits, which distinguish the UQCM from a classical counterpart, but whose experimental demonstrations are still lacking. We here implement the UQCM in a superconducting circuit and investigate these correlations. The measured entanglements well agree with our theoretical prediction that they are independent of the input state and thus constitute a universal quantum behavior of the UQCM that was not previously revealed. Another feature of our experiment is the realization of deterministic and individual cloning, in contrast to previously demonstrated UQCMs, which either were probabilistic or did not constitute true cloning of individual qubits.
机译:无克隆定理禁止完美克隆未知量子状​​态。能够产生具有最佳保真度的任何输入QUB网的两个副本的通用量子克隆机(UQCM)是基本兴趣,并且在量子信息处理中具有应用。这是通过在输入量表和复制QUBITS之间进行精致定制的非分类相关性,使UQCM与经典对应物区分开,但仍缺乏其实验示范。我们这里在超导电路中实现UQCM并研究这些相关性。测量的纠缠非常同意我们的理论预测,即它们独立于输入状态,因此构成先前未透露的UQCM的通用量子行为。我们的实验的另一个特征是实现确定性和个体克隆,与先前证明的UQCM相比,概率或不构成对单个Qubits的真正克隆。

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