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在完美量子纠错码中实现编码逻辑量子比特操作的实验。

Experimental implementation of encoded logical qubit operations in a perfect quantum error correcting code.

机构信息

Fakultät Physik, Technische Universität Dortmund, D-44221 Dortmund, Germany.

出版信息

Phys Rev Lett. 2012 Sep 7;109(10):100503. doi: 10.1103/PhysRevLett.109.100503. Epub 2012 Sep 6.

Abstract

Large-scale universal quantum computing requires the implementation of quantum error correction (QEC). While the implementation of QEC has already been demonstrated for quantum memories, reliable quantum computing requires also the application of nontrivial logical gate operations to the encoded qubits. Here, we present examples of such operations by implementing, in addition to the identity operation, the NOT and the Hadamard gate to a logical qubit encoded in a five qubit system that allows correction of arbitrary single-qubit errors. We perform quantum process tomography of the encoded gate operations, demonstrate the successful correction of all possible single-qubit errors, and measure the fidelity of the encoded logical gate operations.

摘要

大规模通用量子计算需要实现量子错误纠正(QEC)。虽然量子存储器已经实现了 QEC 的应用,但可靠的量子计算还需要对编码量子位执行非平凡的逻辑门操作。在这里,我们通过在一个五量子位系统中对逻辑量子位进行编码来实现除恒等操作外的 NOT 和 Hadamard 门,实现了这种操作的示例,该系统允许纠正任意单量子位错误。我们对编码门操作进行了量子过程层析成像,证明了所有可能的单量子位错误都得到了成功纠正,并测量了编码逻辑门操作的保真度。

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