论文标题
通过绝热状态准备的舒适模型的经典模拟schwinger模型的数字量子模拟
Classically Emulated Digital Quantum Simulation of the Schwinger Model with Topological Term via Adiabatic State Preparation
论文作者
论文摘要
我们对Minkowski SpaceTime中具有拓扑术语的仪表理论进行了数字量子模拟,这实际上是由标准晶格蒙特卡洛模拟无法访问的。我们专注于$ 1+1 $尺寸量子电动动力学,并以$θ$ - 术语称为Schwinger模型。我们使用绝热状态制备构建了晶格schwinger模型的真空状态,这又使我们能够计算费米昂质量运算符相对于真空的期望值。采取连续限制后,我们发现我们在无质量的情况下的结果与已知的确切结果一致。在大规模的情况下,我们在小质量制度和大规模政权的偏差中发现了与质量扰动理论的一致。我们估计达到合理的连续性限制所需的计算成本。我们的结果表明,数字量子模拟已经是用实时和拓扑术语探索规格理论的非扰动方面的有用工具。
We perform a digital quantum simulation of a gauge theory with a topological term in Minkowski spacetime, which is practically inaccessible by standard lattice Monte Carlo simulations. We focus on $1+1$ dimensional quantum electrodynamics with the $θ$-term known as the Schwinger model. We construct the true vacuum state of a lattice Schwinger model using adiabatic state preparation which, in turn, allows us to compute an expectation value of the fermion mass operator with respect to the vacuum. Upon taking a continuum limit we find that our result in massless case agrees with the known exact result. In massive case, we find an agreement with mass perturbation theory in small mass regime and deviations in large mass regime. We estimate computational costs required to take a reasonable continuum limit. Our results imply that digital quantum simulation is already useful tool to explore non-perturbative aspects of gauge theories with real time and topological terms.