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A variational toolbox for quantum multi-parameter estimation

机译:用于量子多参数估计的变形工具箱

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With an ever-expanding ecosystem of noisy and intermediate-scale quantum devices, exploring their possible applications is a rapidly growing field of quantum information science. In this work, we demonstrate that variational quantum algorithms feasible on such devices address a challenge central to the field of quantum metrology: The identification of near-optimal probes and measurement operators for noisy multi-parameter estimation problems. We first introduce a general framework that allows for sequential updates of variational parameters to improve probe states and measurements and is widely applicable to both discrete and continuous-variable settings. We then demonstrate the practical functioning of the approach through numerical simulations, showcasing how tailored probes and measurements improve over standard methods in the noisy regime. Along the way, we prove the validity of a general parameter-shift rule for noisy evolutions, expected to be of general interest in variational quantum algorithms. In our approach, we advocate the mindset of quantum-aided design, exploiting quantum technology to learn close to optimal, experimentally feasible quantum metrology protocols.
机译:通过不断扩大的嘈杂和中间级量子设备的生态系统,探索其可能的应用是一系列快速增长的量子信息科学领域。在这项工作中,我们证明了这种设备上可行的变分量子算法地址挑战核心计量领域的挑战 - 用于噪声的多参数估计问题的近乎最优探测和测量运算符。我们首先介绍一般框架,允许改变探测状态和测量的变分参数的顺序更新,并且广泛适用于离散和连续变量设置。然后,我们通过数值模拟展示了这种方法的实际功能,展示了在嘈杂制度中的标准方法的定制探头和测量如何改善。沿途,我们证明了一般参数换档规则的有效性进行嘈杂的演变,预计对变分量子算法一般兴趣。在我们的方法中,我们倡导量子辅助设计的心态,利用量子技术来学习接近最佳,实验可行的量子计量协议。

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