论文标题

量子多体jarzynski平等和数字量子计算机上的耗散噪声

Quantum many-body Jarzynski equality and dissipative noise on a digital quantum computer

论文作者

Hahn, Dominik, Dupont, Maxime, Schmitt, Markus, Luitz, David J., Bukov, Marin

论文摘要

量子jarzynski平等和骗子的关系是将平衡过程与非平衡波动连接的基本定律。它们是基准量子设备并测量自由能差异的有前途的工具。尽管它们在理论上已经建立了很好的建立,并且对几个体系统的实验实现已经存在,但到目前为止,尚未观察到它们在量子多体制方案中的实验有效性。在这里,我们介绍了在捕获的离子和超导量子量子计算机上获得的超平衡协议的结果,该系统在量子jarzynski平等和骗子的关系中获得了十六个相互作用的自由度。为了实现这一目标,我们克服了当今的限制,在噪音中间尺度量子设备上制备热合奏和测量工作分布中。我们讨论了Jarzynski平等在受平台特定错误的不同量子计算平台上保持的准确性。该分析揭示了Jarzynski在能量耗散方面的平等有效性,并通过快速的单一驱动来补偿。这为分析多体量子模拟器中的错误提供了新的见解。

The quantum Jarzynski equality and the Crooks relation are fundamental laws connecting equilibrium processes with nonequilibrium fluctuations. They are promising tools to benchmark quantum devices and measure free energy differences. While they are well established theoretically and also experimental realizations for few-body systems already exist, their experimental validity in the quantum many-body regime has not been observed so far. Here, we present results for nonequilibrium protocols in systems with up to sixteen interacting degrees of freedom obtained on trapped ion and superconducting qubit quantum computers, which test the quantum Jarzynski equality and the Crooks relation in the many-body regime. To achieve this, we overcome present-day limitations in the preparation of thermal ensembles and in the measurement of work distributions on noisy intermediate-scale quantum devices. We discuss the accuracy to which the Jarzynski equality holds on different quantum computing platforms subject to platform-specific errors. The analysis reveals the validity of Jarzynski's equality in a regime with energy dissipation, compensated for by a fast unitary drive. This provides new insights for analyzing errors in many-body quantum simulators.

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