论文标题

关于量子计算到等离子体模拟的应用

On applications of quantum computing to plasma simulations

论文作者

Dodin, I. Y., Startsev, E. A.

论文摘要

量子计算正在增加关注,这是加快物理系统模拟的潜在方法,并且将其应用于经典等离子体的模拟也是一个有趣的方法。但是,传统上,量子信息科学旨在建模量子力学中发现的特定形式的线性哈密顿系统,因此将现有结果扩展到等离子体应用仍然是一个挑战。在这里,我们报告了对这一领域的长期机会和可能遇到障碍的初步探索。首先,我们表明许多血浆波的问题自然可以以量子状形式表示,因此自然适合量子计算机。其次,我们考虑更多的一般血浆问题,这些问题包括非热动力学(不稳定性,不可逆转的耗散)和非线性。我们表明,通过扩展配置空间,此类系统也可以以量子状形式表示,因此也可以使用量子计算机模拟,尽管与第一种情况相比,它需要更多的计算资源。第三,我们概述了混合量子 - 古典计算机的潜在应用,其中包括对全球本征模的分析以及非线性模拟的替代方法。

Quantum computing is gaining increased attention as a potential way to speed up simulations of physical systems, and it is also of interest to apply it to simulations of classical plasmas. However, quantum information science is traditionally aimed at modeling linear Hamiltonian systems of a particular form that is found in quantum mechanics, so extending the existing results to plasma applications remains a challenge. Here, we report a preliminary exploration of the long-term opportunities and likely obstacles in this area. First, we show that many plasma-wave problems are naturally representable in a quantumlike form and thus are naturally fit for quantum computers. Second, we consider more general plasma problems that include non-Hermitian dynamics (instabilities, irreversible dissipation) and nonlinearities. We show that by extending the configuration space, such systems can also be represented in a quantumlike form and thus can be simulated with quantum computers too, albeit that requires more computational resources compared to the first case. Third, we outline potential applications of hybrid quantum--classical computers, which include analysis of global eigenmodes and also an alternative approach to nonlinear simulations.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源