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The Search for Feebly Interacting Particles
Annual Review of Nuclear and Particle Science ( IF 12.4 ) Pub Date : 2021-09-21 , DOI: 10.1146/annurev-nucl-102419-055056
Gaia Lanfranchi 1 , Maxim Pospelov 2 , Philip Schuster 3
Affiliation  

At the dawn of a new decade, particle physics faces the challenge of explaining the mystery of dark matter, the origin of matter over antimatter in the Universe, the apparent fine-tuning of the electroweak scale, and many other aspects of fundamental physics. Perhaps the most striking frontier to emerge in the search for answers involves New Physics at mass scales comparable to that of familiar matter—below the GeV scale but with very feeble interaction strength. New theoretical ideas to address dark matter and other fundamental questions predict such feebly interacting particles (FIPs) at these scales, and existing data may even provide hints of this possibility. Emboldened by the lessons of the LHC, a vibrant experimental program to discover such physics is underway, guided by a systematic theoretical approach that is firmly grounded in the underlying principles of the Standard Model. We give an overview of these efforts, their motivations, and the decadal goals that animate the community involved in the search for FIPs, and we focus in particular on accelerator-based experiments.

中文翻译:


寻找微弱相互作用的粒子

在新的十年开始之际,粒子物理学面临着解释暗物质之谜、宇宙中物质相对于反物质的起源、电弱尺度的明显微调以及基础物理学的许多其他方面的挑战。或许在寻找答案的过程中出现的最引人注目的前沿涉及质量尺度与熟悉物质相当的新物理学——低于 GeV 尺度但相互作用强度非常微弱。解决暗物质和其他基本问题的新理论思想在这些尺度上预测了这种微弱的相互作用粒子 (FIP),现有数据甚至可能提供这种可能性的暗示。受到 LHC 教训的鼓舞,一个充满活力的实验计划正在进行中,以发现这种物理现象,以系统的理论方法为指导,该方法牢固地基于标准模型的基本原则。我们概述了这些努力、他们的动机,以及激励社区参与寻找 FIP 的十年目标,我们特别关注基于加速器的实验。

更新日期:2021-09-22
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