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New cosmic rays experiments in the underground laboratory of IFIN-HH from Slanic Prahova, Romania

机译:来自罗马尼亚的Slanic Prahova的Ifin-HH地下实验室的新宇宙射线实验

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Since 2006 a modern laboratory has been developed by IFIN-HH in the underground of Slanic Prahova salt ore. This work presents a short review of previous scientific activities performed in the underground laboratory, in parallel with some plans for the future. A mobile detector for cosmic muon flux measurements has been set up at IFIN-HH, Romania. The device is used to measure the muon flux on different locations at the surface and underground and it consists of two detection layers, each one including four large scintillator plates. A new rotatable detector for measurements of the directional variation of the muon flux has been designed and it is presently under preliminary tests. Built from four layers of sensitive material and using for collecting the signals and directing them to the micro PMTs a new technique, through optical fibers instead wave length shifters, it allows an easy discrimination of the moun flux on the arrival directions of muons. Combining the possibility to rotate and the directionality properties, the underground muon detector is acting like a muon tomography device, being able to scan, using cosmic muons, the rock material above the detector. In parallel new detection system based on SiPM will be also installed in the following weeks. It should be composed by four layers, each layer consisting in 4 scintillator plates what we consider in the following as a module of detection. For this purpose, first two scintillator layers, with the optical fibers positioned on perpendicular directions are put in coincidence with other two layers, 1 m distance from the first two, with similar optical fiber arrangement, thus allowing reconstructing muon trajectory. It is intended also to design and construct an experimental device for the investigation of such radio antennas and the behavior of the signal in rock salt at the Slanic salt mine in Romania. Another method to detect high energy neutrinos is based on the detection of secondary particles resulting from the interaction with the salt massive. We intent to design and construct a 3D array in the underground of Slanic Prahova salt ore.
机译:自2006年以来有现代化的实验室已经在斯勒尼克普拉霍瓦盐矿石的地下开发了IFIN-HH。在地下实验室与一些未来的计划进行这项工作提出了以前的科学活动的一个简短的回顾,并联。对于宇宙μ介子通量测量的移动检测器已经在IFIN-HH,罗马尼亚已成立。该装置被用来测量在地表和地下的不同位置处的μ介子通量,它由两个检测层,每一个包括四个大闪烁体板。对于μ介子通量的定向变化的测量的新的旋转检测器的设计和它目前正在初步测试。从敏感四层材料建造和使用用于收集信号,并将其引导至光电倍增管微一种新技术,通过光纤代替波长转换器,它允许在μ介子的到来方向的磁通MOUN的容易辨别。的可能性相结合,旋转和方向性特性,地下μ介子探测器像个μ介子断层摄影装置中,能够进行扫描,使用宇宙μ子,岩石材料中的检测器的上方。在基于平行的SiPM新的检测系统也将被安装在以下周。应该由四个层,每一层包括在我们在下文中作为检测的一个模块考虑4个闪烁体板构成。为了这个目的,首先两个闪烁层,与位于垂直方向上的光纤被置于重合两个其他层,从所述第一两个1米的距离,与同类光纤配置,从而允许重构μ介子轨迹。它的目的还设计和构建的实验装置用于这种无线电天线的调查和在罗马尼亚斯勒尼克盐矿在岩盐信号的行为。检测高能量中微子另一种方法是基于检测从与所述盐大量相互作用而产生二次颗粒。我们的意图来设计和构建斯勒尼克普拉霍瓦盐矿石的地下三维阵列。

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