论文标题

雪人质量量表理论的雪人质主题组的报告

Report of the Snowmass 2021 Topical Group on Lattice Gauge Theory

论文作者

Davoudi, Zohreh, Neil, Ethan T., Bauer, Christian W., Bhattacharya, Tanmoy, Blum, Thomas, Boyle, Peter, Brower, Richard C., Catterall, Simon, Christ, Norman H., Cirigliano, Vincenzo, Colangelo, Gilberto, DeTar, Carleton, Detmold, William, Edwards, Robert G., El-Khadra, Aida X., Gottlieb, Steven, Gupta, Rajan, Hackett, Daniel C., Hasenfratz, Anna, Izubuchi, Taku, Jay, William I., Jin, Luchang, Kelly, Christopher, Kronfeld, Andreas S., Lehner, Christoph, Lin, Huey-Wen, Lin, Meifeng, Lytle, Andrew T., Meinel, Stefan, Meurice, Yannick, Mukherjee, Swagato, Nicholson, Amy, Prelovsek, Sasa, Savage, Martin J., Shanahan, Phiala E., Van De Water, Ruth S., Wagman, Michael L., Witzel, Oliver

论文摘要

晶格量规理论仍然是一种强大的理论和计算方法,用于模拟强烈相互作用的量子场理论,其应用几乎渗透到高能物理学中现代研究的几乎所有学科。是否要启用精确的夸克和Lepton-Flovor物理学,发现核子和核中新物理学的信号,以阐明强子结构和观察者,作为一个数值实验室,以超越标准模型,还是要发明和改善目前的计算范围,以增强A型的计算范围,以增强效率 - 竞争性范围,以创建效率 - 竞争范围的效能,并在效率上的探索效果,并在遗产中的效能范围,并创建了一个效率 - 渡轮范围的探索。在未来十年中,高能物理学的实验计划。该投影基于多年来使用晶格规程理论出现的丰富成功结果:持续改进理论框架和算法诉讼;即将过渡到高性能计算的Exascale时代;以及在美国和全球的熟练,敬业和有组织的晶格理论家社区。最近在美国十年二十年粒子物理规划练习(Snowmass 2021)中研究了这一努力推动高能物理研究前沿的前景,并在此主题报告中总结了结论。

Lattice gauge theory continues to be a powerful theoretical and computational approach to simulating strongly interacting quantum field theories, whose applications permeate almost all disciplines of modern-day research in High-Energy Physics. Whether it is to enable precision quark- and lepton-flavor physics, to uncover signals of new physics in nucleons and nuclei, to elucidate hadron structure and spectrum, to serve as a numerical laboratory to reach beyond the Standard Model, or to invent and improve state-of-the-art computational paradigms, the lattice-gauge-theory program is in a prime position to impact the course of developments and enhance discovery potential of a vibrant experimental program in High-Energy Physics over the coming decade. This projection is based on abundant successful results that have emerged using lattice gauge theory over the years: on continued improvement in theoretical frameworks and algorithmic suits; on the forthcoming transition into the exascale era of high-performance computing; and on a skillful, dedicated, and organized community of lattice gauge theorists in the U.S. and worldwide. The prospects of this effort in pushing the frontiers of research in High-Energy Physics have recently been studied within the U.S. decadal Particle Physics Planning Exercise (Snowmass 2021), and the conclusions are summarized in this Topical Report.

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