Searching in the dark: the hunt for the dark photon

Q1 Physics and Astronomy Reviews in Physics Pub Date : 2020-11-01 DOI:10.1016/j.revip.2020.100042
Alessandra Filippi , M. De Napoli
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引用次数: 50

Abstract

The existence of Dark Matter (DM) is a well established fact since many decades, thanks to the observation of the effects of its gravitational interaction with the ordinary matter in the Universe. However, our knowledge of the Dark Matter features is still rather scarce. Indeed, one of the biggest quests in fundamental science today is the investigation of Dark Matter nature, from its origin to its composition, and the way its constituents interact with the ordinary matter, apart from gravity. Huge and ambitious efforts have been spent in the last years into its identification, concentrating especially on the search of viable Weakly Interacting Massive Particle candidates. However, no positive results have been achieved so far along this direction. On the other hand, many fascinating new ideas and models for its interpretation have been blooming: among them, an intriguing hypothesis is that the Dark Matter constituents could be neutral under Standard Model interactions, but they could interact through a new, still unknown, force under a “hidden” charge. This new hidden symmetry would be mediated by a massive gauge boson, the dark photon, which is expected to couple to the Standard Model via a kinetic mixing. The search for such a massive mediator has been pursued with large enthusiasm and dedication in the latest years, as its observation could be within the reach of many already existing experimental facilities, both based on accelerators or in smaller scale setups. This report reviews the present status and progress of the experimental searches in this field.

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在黑暗中搜寻:寻找黑暗光子
暗物质(DM)的存在几十年来一直是一个公认的事实,这要归功于对它与宇宙中普通物质相互作用的引力效应的观察。然而,我们对暗物质特征的了解仍然相当匮乏。事实上,当今基础科学中最大的任务之一就是研究暗物质的本质,从它的起源到它的组成,以及它的成分与普通物质相互作用的方式,除了引力。在过去的几年里,人们花费了巨大而雄心勃勃的努力来识别它,特别是集中在寻找可行的弱相互作用大质量粒子候选者上。但是,到目前为止,在这方面还没有取得任何积极的成果。另一方面,许多解释暗物质的新想法和新模型层出不穷:其中一个有趣的假设是,暗物质成分在标准模型相互作用下可能是中性的,但它们可能在“隐藏”电荷下通过一种新的、未知的力相互作用。这种新的隐藏对称将由一个巨大的规范玻色子(暗光子)介导,它有望通过动力学混合与标准模型耦合。近年来,人们一直在以极大的热情和奉献精神寻找这样一个巨大的介质,因为它的观察可能在许多现有的实验设施范围内,无论是基于加速器还是在较小规模的装置中。本文综述了该领域实验研究的现状和进展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Reviews in Physics
Reviews in Physics Physics and Astronomy-Physics and Astronomy (all)
CiteScore
21.30
自引率
0.00%
发文量
8
审稿时长
98 days
期刊介绍: Reviews in Physics is a gold open access Journal, publishing review papers on topics in all areas of (applied) physics. The journal provides a platform for researchers who wish to summarize a field of physics research and share this work as widely as possible. The published papers provide an overview of the main developments on a particular topic, with an emphasis on recent developments, and sketch an outlook on future developments. The journal focuses on short review papers (max 15 pages) and these are freely available after publication. All submitted manuscripts are fully peer-reviewed and after acceptance a publication fee is charged to cover all editorial, production, and archiving costs.
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