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Localization in the quantum sawtooth map emulated on a quantum-information processor

机译:在量子信息处理器上模拟的量子锯齿图中的定位

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Quantum computers will be unique tools for understanding complex quantum systems. We report an experimental implementation of a sensitive, quantum coherence-dependent localization phenomenon on a quantum information processor (QIP). The localization effect was studied by emulating the dynamics of the quantum sawtooth map in the perturbative regime on a three-qubit QIP. Our results show that the width of the probability distribution in momentum space remained essentially unchanged with successive iterations of the sawtooth map, a result that is consistent with localization. The height of the peak relative to the baseline of the probability distribution did change, a result that is consistent with our QIP being an ensemble of quantum systems with a distribution of errors over the ensemble. We further show that the previously measured distributions of control errors correctly account for the observed changes in the probability distribution.
机译:量子计算机将成为理解复杂量子系统的独特工具。我们报告了在量子信息处理器(QIP)上一个敏感的,与量子相干相关的局部化现象的实验实现。通过在三量子位QIP上模拟扰动状态下的量子锯齿图动力学,研究了定位效应。我们的结果表明,动量空间中概率分布的宽度在锯齿图的连续迭代中基本保持不变,这一结果与定位一致。相对于概率分布基线的峰高确实发生了变化,这一结果与我们的QIP是量子系统的集合相一致,并且在该集合上具有误差分布。我们进一步表明,先前测得的控制误差分布正确地说明了概率分布中观察到的变化。

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