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Coherent state evolution in a superconducting qubit from partial-collapse measurement

机译:从局部塌陷测量看超导量子位中的相干态演化

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Measurement is one of the fundamental building blocks of quantum-information processing systems. Partial measurement, where full wavefunction collapse is not the only outcome, provides a detailed test of the measurement process. We introduce quantum-state tomography in a superconducting qubit that exhibits high-fidelity single-shot measurement. For the two probabilistic outcomes of partial measurement, we find either a full collapse or a coherent yet nonunitary evolution of the state. This latter behavior explicitly confirms modern quantum-measurement theory and may prove important for error-correction algorithms in quantum computation.
机译:测量是量子信息处理系统的基本组成部分之一。局部测量不是唯一的结果,在这种情况下,全波函数崩溃不是唯一的结果,它提供了对测量过程的详细测试。我们在超导量子位中引入量子态层析成像技术,该技术展现出高保真的单次测量。对于局部测量的两个概率结果,我们发现状态完全崩溃或连贯但非统一的演变。后一种行为明确证实了现代量子测量理论,并可能证明对量子计算中的纠错算法很重要。

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