Overview of dark matter detection

Tianyi Shen
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Abstract

Dark matter is a perplexing and hard-to-find form of matter that governs the gravitational dynamics of the universe. This paper presents an overview of the existing comprehension of dark matter discovery, with emphasis on its theoretical structure, detection techniques, and future possibilities. The standard model of particle physics, even though effective in detailing recognized particles and forces, falls short in describing dark matter. Various theories and models, such as the Cold Dark Matter and Weakly Interacting Massive Particles models, have been proposed to explain the character of dark matter. Direct and indirect detection methods, including underground experiments, cosmic microwave background studies and collider experiments, are used to find dark matter. Despite extensive efforts, the direct detection of dark matter particles remains elusive. The detection of dark matter poses various challenges such as weak interactions and the requirement for highly sensitive detectors. Progress in dark matter detection will depend on advancements in detector technology, addressing open questions, and theoretical developments, which will offer insights into the fundamental laws of nature and the structure of the universe.
暗物质探测概述
暗物质是一种令人困惑且难以发现的物质形式,它主导着宇宙的引力动力学。本文概述了对暗物质发现的现有理解,重点是其理论结构、探测技术和未来的可能性。粒子物理学的标准模型尽管在详细描述公认的粒子和力方面很有效,但在描述暗物质方面却存在不足。为了解释暗物质的特性,人们提出了各种理论和模型,如冷暗物质模型和弱相互作用大质量粒子模型。直接和间接探测方法,包括地下实验、宇宙微波背景研究和对撞机实验,都被用来寻找暗物质。尽管做了大量努力,但暗物质粒子的直接探测仍然遥不可及。暗物质探测面临各种挑战,如弱相互作用和对高灵敏探测器的要求。暗物质探测的进展将取决于探测器技术的进步、未决问题的解决以及理论的发展,这将为人们提供对自然基本规律和宇宙结构的洞察。
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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