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Hunting for Dark Matter particles with new detectors

机译:用新的探测器寻找暗物质粒子

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摘要

Although first hints of the existence of Dark Matter were observed by the Swiss astronomer Zwicky already in the 1930s, only in recent years has it become known that the universe, in fact, is dominated by particles whose nature is almost unknown and which have never been directly observed. Meanwhile, as the existence of these particles is postulated not only by astronomy, but also cosmology and theoretical particle physics, there is significant effort to detect them in a laboratory experiment and determine their physical properties. However, as the interaction rate between Dark Matter particles and ordinary matter is extremely low, detectors have to be extremely sensitive. Low temperature detectors have been available for more than a decade and have now reached the highest sensitivity for direct Dark Matter detection. In this article, we give a short overview of observational results that suggest the existence of Dark Matter particles and what physicists have learned so far about their properties. The main focus is on the experimental challenges and effort for their direct detection.
机译:尽管瑞士天文学家兹维奇(Zwicky)早在1930年代就已经观察到了暗物质的存在的先兆,但直到最近几年才知道宇宙实际上由其性质几乎未知且从未被发现的粒子所控制直接观察。同时,由于这些粒子的存在不仅被天文学,宇宙学和理论粒子物理学所假设,因此需要大量的努力在实验室实验中对其进行检测并确定其物理性质。但是,由于暗物质粒子与普通物质之间的相互作用速率非常低,因此探测器必须非常灵敏。低温探测器已经使用了十多年,现在已经达到了直接暗物质探测的最高灵敏度。在本文中,我们简要概述了观察结果,这些结果表明存在暗物质粒子,以及物理学家迄今为止已了解到的有关其性质的知识。主要重点在于直接检测的实验挑战和努力。

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