论文标题

驱动量子多体系统中的量子至上

Quantum supremacy in driven quantum many-body systems

论文作者

Tangpanitanon, Jirawat, Thanasilp, Supanut, Lemonde, Marc-Antoine, Dangiam, Ninnat, Angelakis, Dimitris G.

论文摘要

量子模拟和计算领域中的关键里程碑是证明量子设备可以计算某些具有任何合理资源的经典计算机无法复制的任务。这样的示威被称为量子至高无上。最重要的问题之一是确定表现量子至上的设置,可以通过当前的量子技术实施。这两个标准候选者是玻色子采样和随机量子电路。在这里,我们表明可以在通用定期驱动的量子多体系统中获得量子至上。我们的分析基于复杂性理论中的本征态热假说和强有力的猜想。为了说明我们的作品,我们举例说明了由全球磁场和带有调制的跳跃的全球磁场和bose-Hubbard链驱动的简单疾病链链的示例。我们的提案为大量量子平台展示和基准量子至上的道路开辟了道路。

A crucial milestone in the field of quantum simulation and computation is to demonstrate that a quantum device can compute certain tasks that are impossible to reproduce by a classical computer with any reasonable resources. Such a demonstration is referred to as quantum supremacy. One of the most important questions is to identify setups that exhibit quantum supremacy and can be implemented with current quantum technology. The two standard candidates are boson sampling and random quantum circuits. Here, we show that quantum supremacy can be obtained in generic periodically-driven quantum many-body systems. Our analysis is based on the eigenstate thermalization hypothesis and strongly-held conjectures in complexity theory. To illustrate our work, We give examples of simple disordered Ising chains driven by global magnetic fields and Bose-Hubbard chains with modulated hoppings. Our proposal opens the way for a large class of quantum platforms to demonstrate and benchmark quantum supremacy.

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