论文标题

用于变异量子算法的硬件有效的纠缠测量

Hardware-efficient entangled measurements for variational quantum algorithms

论文作者

Escudero, Francisco, Fernández-Fernández, David, Jaumà, Gabriel, Peñas, Guillermo F., Pereira, Luciano

论文摘要

近年来,由于使用嘈杂的中间尺度量子(NISQ)设备解决实践问题的潜力,近年来,变化算法受到了极大的关注。这些算法的基本步骤是对哈密顿人的期望值进行评估,因此需要有效执行此任务的有效方案。标准方法采用了保利操作员的本地测量,需要大量电路。另一种选择是利用纠缠的测量结果,这可能会引入损害性能的物理断开量子位之间的其他门。作为解决此问题的解决方案,我们提出了硬件有效的纠缠测量值(HEEM),即仅允许在物理连接的量子器之间纠缠的测量值。我们表明,该策略通过减少所需的电路数量而不增加其深度,从而增强了NISQ设备中分子哈密顿量的评估。我们提供了与本地测量和任意纠缠的测量相比,该方法如何提供更好的结果的定量指标。我们使用带有HEEM的变分量子量化量估算了带有经典模拟器和量子硬件的H $ _2 $ o分子的基态能量。

Variational algorithms have received significant attention in recent years due to their potential to solve practical problems using noisy intermediate-scale quantum (NISQ) devices. A fundamental step of these algorithms is the evaluation of the expected value of Hamiltonians, and hence efficient schemes to perform this task are required. The standard approach employs local measurements of Pauli operators and requires a large number of circuits. An alternative is to make use of entangled measurements, which might introduce additional gates between physically disconnected qubits that harm the performance. As a solution to this problem, we propose hardware-efficient entangled measurements (HEEM), that is, measurements that permit only entanglement between physically connected qubits. We show that this strategy enhances the evaluation of molecular Hamiltonians in NISQ devices by reducing the number of circuits required without increasing their depth. We provide quantitative metrics of how this approach offers better results than local measurements and arbitrarily entangled measurements. We estimate the ground-state energy of the H$_2$O molecule with classical simulators and quantum hardware using the variational quantum eigensolver with HEEM.

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