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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Search for dark matter in the Sun with the ANTARES neutrino telescope in the CMSSM and mUED frameworks
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Search for dark matter in the Sun with the ANTARES neutrino telescope in the CMSSM and mUED frameworks

机译:在CMSSM和mUED框架中使用ANTARES中微子望远镜在太阳下搜索暗物质

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摘要

ANTARES is the first neutrino telescope in the sea. It consists of a three-dimensional array of 885 photomultipliers to collect the Cherenkov light induced by relativistic muons produced in CC interactions of high energy neutrinos. One of the main scientific goals of the experiment is the search for dark matter. We present here the analysis of data taken during 2007 and 2008 to look for a WIMP signal in the Sun. WIMPs are one of the most popular scenarios to explain the dark matter content of the Universe. They would accumulate in massive objects like the Sun or the Galactic Center and their self-annihilation would produce (directly or indirectly) high energy neutrinos detectable by neutrino telescopes. Contrary to other indirect searches (like with gamma rays or positrons), the search for neutrinos in the Sun is free from other astrophysical contributions, so the interpretation of a potential signal in terms of dark matter is much more robust.
机译:ANTARES是海洋中第一台中微子望远镜。它由一个由885个光电倍增管组成的三维阵列组成,用于收集高能中微子CC相互作用中产生的相对论性μ子引起的Cherenkov光。实验的主要科学目标之一是寻找暗物质。我们在此介绍2007年和2008年期间收集的数据分析,以寻找太阳下的WIMP信号。 WIMP是解释宇宙暗物质含量的最受欢迎的方案之一。它们会聚集在太阳或银河系中心之类的大物体中,它们的自-灭将产生(直接或间接)被中微子望远镜探测到的高能中微子。与其他间接搜索(例如使用伽马射线或正电子)相反,在太阳中搜索中微子没有其他天体物理学的贡献,因此对暗物质方面的潜在信号的解释更加可靠。

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