论文标题
随机国家技术
Random State Technology
论文作者
论文摘要
我们以独立的方式审查并扩展了基于随机状态使用的数值模拟方法的数学基础。该模拟技术的功率和多功能性通过计算物理相关的特性(例如大型单个粒子系统的状态,特定的热量,电流相关性,密度密度相关性和电子自旋谐振光谱)的计算来说明。我们通过证明它可以用于分析旨在在嘈杂的中间规模量子处理器上实现量子至上的数值模拟和实验来探索随机状态技术的新应用领域。此外,我们表明,随机状态技术的概念在量子信息理论中被证明是有用的。
We review and extend, in a self-contained way, the mathematical foundations of numerical simulation methods that are based on the use of random states. The power and versatility of this simulation technology is illustrated by calculations of physically relevant properties such as the density of states of large single particle systems, the specific heat, current-current correlations, density-density correlations, and electron spin resonance spectra of many-body systems. We explore a new field of applications of the random state technology by showing that it can be used to analyze numerical simulations and experiments that aim to realize quantum supremacy on a noisy intermediate-scale quantum processor. Additionally, we show that concepts of the random state technology prove useful in quantum information theory.