论文标题
通过热场动力学对有限温度动力学特性的变异量子模拟
Variational Quantum Simulations of Finite-Temperature Dynamical Properties via Thermofield Dynamics
论文作者
论文摘要
量子计算机硬件的最新进步提供了模拟量子多体系统超出其经典同行功能的潜力。但是,大多数当前的作品着重于模拟量子系统的地面特性或纯态量子动力学。有限温度的物理学的探索程度要少得多,现有文献主要考虑平衡特性。在这里,我们提出了基于热场动力学形式主义的变异量子模拟协议,以模拟具有近期量子计算机的量子系统的动力学和非平衡有限温度的特性。与计算平衡动力学特性的先前方法相比,我们的方法不需要计算昂贵的初始状态采样。更重要的是,我们的方法能够模拟以前尚未使用量子计算机探索的非平衡现象。分子吸收光谱和自旋淬火动力学的数值模拟确认了我们方法的能力。
The recent advancement of quantum computer hardware offers the potential to simulate quantum many-body systems beyond the capability of its classical counterparts. However, most current works focus on simulating the ground-state properties or pure-state quantum dynamics of quantum systems. Finite-temperature physics are much less explored, and existing literature mainly consider equilibrium properties. Here we present a variational quantum simulation protocol based on the thermofield dynamics formalism to simulate the dynamical and non-equilibrium finite-temperature properties of quantum systems with near-term quantum computers. Compared to previous approaches in computing the equilibrium dynamical properties, our approach does not require the computationally expensive initial state sampling. More importantly, our approach is capable of simulating non-equilibrium phenomena which have not been previously explored with quantum computers. Numerical simulations of molecular absorption spectrum and spin quenched dynamics affirm the capability of our method.