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首页> 外文期刊>The European Physical Journal C - Particles and Fields >Search for relativistic magnetic monopoles with the AMANDA-II neutrino telescope
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Search for relativistic magnetic monopoles with the AMANDA-II neutrino telescope

机译:使用AMANDA-II中微子望远镜搜索相对论磁性单极子

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We present the search for Cherenkov signatures from relativistic magnetic monopoles in data taken with the AMANDA-II detector, a neutrino telescope deployed in the Antarctic ice cap at the Geographic South Pole. The non-observation of a monopole signal in data collected during the year 2000 improves present experimental limits on the flux of relativistic magnetic monopoles: Our flux limit varies between 3.8×10−17 cm−2 s−1 sr−1 (for monopoles moving at the vacuum speed of light) and 8.8×10−16 cm−2 s−1 sr−1 (for monopoles moving at a speed β=v/c=0.76, just above the Cherenkov threshold in ice). These limits apply to monopoles that are energetic enough to penetrate the Earth and enter the detector from below the horizon. The limit obtained for monopoles reaching the detector from above the horizon is less stringent by roughly an order of magnitude, due to the much larger background from down-going atmospheric muons. This looser limit is however valid for a larger class of magnetic monopoles, since the monopoles are not required to pass through the Earth.
机译:我们提出从相对论磁性单极子中搜索用AMANDA-II探测器(部署在南极地理南极冰盖中的中微子望远镜)采集的数据中的Cherenkov签名的搜索。 2000年收集的数据中未观测到单极信号改善了相对论磁单极磁通的当前实验极限:我们的磁通极限在3.8×10 −17 cm −2之间变化 s −1 sr −1 (对于以光的真空速度运动的单极子)和8.8×10 −16 cm < sup> -2 s -1 sr -1 (对于单极运动,速度为β= v / c = 0.76,刚好在冰中的Cherenkov阈值之上)。这些限制适用于能量足以穿透地球并从地平线以下进入探测器的单极子。由于向下的大气介子的背景要大得多,因此单极天线从地平线上方到达检测器所获得的极限严格程度降低了一个数量级。但是,由于不需要单极穿过地球,因此该较宽松的限制对较大类的磁性单极有效。

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