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Measurement of the antiproton/proton ratio at TeV energies with the ARGO-YBJ detector

机译:使用ARGO-YBJ探测器在TeV能量下测量反质子/质子比

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Cosmic ray antiprotons provide an important probe for the study of cosmic-ray propagation in the interstellar space and to investigate the existence of Galactic dark matter. Cosmic rays are hampered by the Moon, therefore a deficit of cosmic rays in its direction is expected (the so-called Moon shadow). The Earth-Moon system acts as a magnetic spectrometer. In fact, due to the geomagnetic field the center of the Moon shifts westward by an amount depending on the primary cosmic ray energy. Paths of primary antiprotons are therefore deflected in an opposite sense in their way to the Earth. This effect allows, in principle, the search of antiparticles in the opposite direction of the observed Moon shadow. The ARGO-YBJ experiment, in stable data taking since November 2007 with an energy threshold of a few 100s of GeV, is observing the Moon shadow with high statistical significance. Using about 1 year data, an upper limit of the p/p flux ratio in the few-TeV energy region is set to a few percent with a confidence level of 90%.
机译:宇宙射线反质子为研究宇宙射线在星际空间中的传播以及研究银河暗物质的存在提供了重要的探针。宇宙射线受到月球的阻碍,因此预期宇宙射线在其方向上会出现不足(所谓的月影)。地月系统充当电磁光谱仪。实际上,由于地磁场的作用,月球的中心向西移动了一个量,该量取决于主要的宇宙射线能量。因此,主要反质子的路径以与地球相反的方向偏转。从原理上讲,这种效果可在与观察到的月球阴影相反的方向上搜索反粒子。 ARGO-YBJ实验自2007年11月以来以稳定的数据采集,能量阈值为几百GeV,正在观察具有高度统计意义的月球阴影。使用大约1年的数据,将少数TeV能量区域中p / p通量比的上限设置为百分之几,置信度为90%。

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