Boltzmann distributions on a quantum computer via active cooling

IF 1.7 4区 物理与天体物理 Q2 PHYSICS, NUCLEAR Nuclear Physics A Pub Date : 2023-10-01 DOI:10.1016/j.nuclphysa.2023.122708
Carter Ball, Thomas D. Cohen
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引用次数: 3

Abstract

Quantum computing raises the possibility of solving a variety of problems in physics that are presently intractable. A number of such problems involves the physics of systems in or near thermal equilibrium. There are two main ways to compute thermal expectation values on a quantum computer: construct a thermal state that reproduces thermal expectation values, or sample various energy eigenstates from a Boltzmann distribution of a given temperature. In this paper we address the second approach and propose an algorithm that uses active cooling to produce the distribution. While this algorithm is quite general and applicable to a wide variety of systems, it was developed with the specific intention of simulating thermal configurations of non-Abelian gauge theories such as QCD, which would allow the study of quark-gluon plasma created in heavy-ion collisions.

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量子计算机上主动冷却的Boltzmann分布
量子计算提出了解决目前难以解决的各种物理问题的可能性。许多这样的问题涉及处于或接近热平衡的系统的物理学。在量子计算机上计算热期望值有两种主要方法:构建一个再现热期望值的热态,或者从给定温度的玻尔兹曼分布中采样各种能量本征态。在本文中,我们讨论了第二种方法,并提出了一种使用主动冷却来产生分布的算法。虽然该算法非常通用,适用于各种系统,但它的开发初衷是模拟非阿贝尔规范理论(如QCD)的热配置,这将允许研究重离子碰撞中产生的夸克胶子等离子体。
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来源期刊
Nuclear Physics A
Nuclear Physics A 物理-物理:核物理
CiteScore
3.60
自引率
7.10%
发文量
113
审稿时长
61 days
期刊介绍: Nuclear Physics A focuses on the domain of nuclear and hadronic physics and includes the following subsections: Nuclear Structure and Dynamics; Intermediate and High Energy Heavy Ion Physics; Hadronic Physics; Electromagnetic and Weak Interactions; Nuclear Astrophysics. The emphasis is on original research papers. A number of carefully selected and reviewed conference proceedings are published as an integral part of the journal.
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