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Exponential Speedup with a Single Bit of Quantum Information: Measuring the Average Fidelity Decay

机译:具有一点量子信息的指数加速:测量平均保真度衰减

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摘要

We present an efficient quantum algorithm to measure the average fidelity decay of a quantum map under perturbation using a single bit of quantum information. Our algorithm scales only as the complexity of the map under investigation. Thus for those maps admitting an efficient gate decomposition, it provides an exponential speedup over known classical procedures. Fidelity decay is important in the study of complex dynamical systems, where it is conjectured to be a signature of eigenvector statistics. Our result also illustrates the role of chaos in the process of decoherence.
机译:我们提出了一种有效的量子算法,用于使用单个量子信息在扰动下测量量子图的平均保真度衰减。我们的算法仅根据所调查地图的复杂性进行缩放。因此,对于那些允许有效门分解的映射,它提供了超过已知经典过程的指数级加速。保真度衰减在复杂动力系统的研究中很重要,据推测,它是特征向量统计的标志。我们的结果还说明了混沌在去相干过程中的作用。

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