论文标题

迈向量子计算机上材料的动态模拟

Towards Dynamic Simulations of Materials on Quantum Computers

论文作者

Bassman, Lindsay, Liu, Kuang, Krishnamoorthy, Aravind, Linker, Thomas, Geng, Yifan, Shebib, Daniel, Fukushima, Shogo, Shimojo, Fuyuki, Kalia, Rajiv K., Nakano, Aiichiro, Vashishta, Priya

论文摘要

量子计算机的备受期待的应用是量子多体系统的通用模拟器,正如理查德·费曼(Richard Feynman)在1980年代猜想的那样。在过去的十年中,量子计算在模拟量子系统的静态特性(即小分子的基态能量)中的成功越来越大。但是,模拟量子多体动力学上的量子噪音中间尺度量子计算机仍然是一个挑战。在这里,我们证明了对IBM Q16墨尔本量子处理器和Rigetti的Aspen量子处理器的非平凡量子动力学的成功模拟。也就是说,在原子上稀薄的二维材料中,THZ辐射对新兴磁性的超快控制。包括执行此类模拟的完整代码和分步教程,以降低障碍以访问这两台量子计算机的未来研究。因此,这项工作奠定了对近量子计算机上各种量子动力学的有前途研究的基础,包括浮雕状态的动态定位以及噪音环境中Qubits的拓扑保护。

A highly anticipated application for quantum computers is as a universal simulator of quantum many-body systems, as was conjectured by Richard Feynman in the 1980s. The last decade has witnessed the growing success of quantum computing for simulating static properties of quantum systems, i.e., the ground state energy of small molecules. However, it remains a challenge to simulate quantum many-body dynamics on current-to-near-future noisy intermediate-scale quantum computers. Here, we demonstrate successful simulation of nontrivial quantum dynamics on IBM's Q16 Melbourne quantum processor and Rigetti's Aspen quantum processor; namely, ultrafast control of emergent magnetism by THz radiation in an atomically-thin two-dimensional material. The full code and step-by-step tutorials for performing such simulations are included to lower the barrier to access for future research on these two quantum computers. As such, this work lays a foundation for the promising study of a wide variety of quantum dynamics on near-future quantum computers, including dynamic localization of Floquet states and topological protection of qubits in noisy environments.

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