论文标题

宇宙射线各向异性研究通过检测哑束

Cosmic ray anisotropy study by means of detection of muon bundles

论文作者

Trinchero, G., Amelchakov, M. B., Bogdanov, A. G., Chiavassa, A., Dmitrieva, A. N., Mannocchi, G., Khokhlov, S. S., Kokoulin, R. P., Kompaniets, K. G., Petrukhin, A. A., Shutenko, V. V., Shulzhenko, I. A., Yashin, I. I., Yurina, E. A.

论文摘要

在这项工作中,我们使用在大量空气淋浴中形成并在地面上检测到的万能束作为搜索高能宇宙射线各向异性的工具。这种选择是通过插座的穿透能力来解释的,该能力使他们能够以良好的精度保留一级颗粒的方向。在2012 - 2022年,我们使用坐标跟踪检测器装饰进行了长期的哑束检测,这是实验复合物Nevod(Mephi,Moscow)的一部分。为了搜索宇宙射线各向异性,使用了局部坐标系中15至75度范围内到达天顶角的MUON束。在整个数据时期,大约有1400万此类事件已累积。 In this paper, we describe some methods developed in the Experimental complex NEVOD and implemented in our research, including: the method for compensating the influence of meteorological conditions on the intensity of muon bundles at the Earth's surface, the method for accounting the design features of the detector and the inhomogeneity of the detection efficiency for different directions, as well as the method for estimating primary energies of cosmic rays.在这里,我们介绍了在PEV区域中寻找具有能量的宇宙射线偶极子各向异性的结果,并将它们与其他科学设施获得的结果进行了比较。

In this work, we use muon bundles which are formed in extensive air showers and detected at the ground level as a tool for searching anisotropy of high energy cosmic rays. Such choice is explained by the penetrating ability of muons which allows them to retain the direction of primary particles with a good accuracy. In 2012-2022, we performed long-term muon bundle detection with the coordinate-tracking detector DECOR, which is a part of the Experimental complex NEVOD (MEPhI, Moscow). To search for the cosmic rays anisotropy, the muon bundles arriving at zenith angles in the range from 15 to 75 degrees in the local coordinate system are used. During the entire period of data taking, about 14 million of such events have been accumulated. In this paper, we describe some methods developed in the Experimental complex NEVOD and implemented in our research, including: the method for compensating the influence of meteorological conditions on the intensity of muon bundles at the Earth's surface, the method for accounting the design features of the detector and the inhomogeneity of the detection efficiency for different directions, as well as the method for estimating primary energies of cosmic rays. Here we present the results of the search for the dipole anisotropy of cosmic rays with energies in the PeV region and also compare them with the results obtained at the other scientific facilities.

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