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首页> 外文期刊>Physics of atomic nuclei >Delta E-E Telescope for the Detection of Charged Particles Based on a Si Detector and a SiPM Array with Scintillation Crystals
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Delta E-E Telescope for the Detection of Charged Particles Based on a Si Detector and a SiPM Array with Scintillation Crystals

机译:用于检测基于Si检测器的带电粒子的Delta E-E望远镜和闪烁晶体的SIPM阵列

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摘要

The characteristics of a E-E telescope, which is planned to be used in the experimental setup focused on few-nucleon reactions, are studied. The required parameters of the E-E telescope were determined on the basis of the numerical modeling of probable reactions. The telescope comprises a E detector, which is a totally depleted surface-barrier silicon detector with a diameter of 8 mm and a thickness of 24 m, and an E detector based on LFS-8 crystals and a 16-element SiPM ARRAYC-30035-16P-PCB array. The telescope is designed, in particular, for coincidence detection of two charged particles emitted at close angles. This is made possible by the matrix structure of the E detector. The time resolution of the E detector and the time and amplitude resolutions of all cells of the E detector were determined. The standard method of detection of two quanta from the beta decay of Na-22 was used to measure the time resolution. Time coincidences of signals from the E detector and a neutron detector based on a liquid scintillator (EJ-301) with its FWHM no worse than 1 ns were obtained. Similar measurements for the E-detector cells revealed time (less than 0.6 ns) and amplitude (15% at an energy of 1 MeV) resolutions that satisfy the experimental requirements for particle sorting and determination of their energy. The intrinsic background of the E detector, which arises from the radioactivity of LFS-8 crystals, was measured. The relative number of events corresponding to simultaneous triggering of two or more E-detector cells irradiated with particles from a Ra-226 source was also determined. This value may help estimate the number of random coincidences in a real experiment.
机译:研究了e-e望远镜的特性,其计划用于专注于几核反应的实验装置中。基于可能反应的数值建模确定E-E望远镜所需的参数。望远镜包括E检测器,其是一种直径为8mm的完全耗尽的表面屏障硅检测器,厚度为24μm,以及基于LFS-8晶体的E检测器和16元SIPM arrayc-30035- 16P-PCB阵列。望远镜特别设计用于在密切角度发射的两个带电粒子的重合检测。这是通过滤波器的矩阵结构来实现的。确定E检测器的时间分辨率和E检测器的所有细胞的时间和幅度分辨率。使用来自NA-22的β衰减的两个量子的标准检测方法来测量时间分辨率。基于液体闪烁体(EJ-301)的来自E检测器和中子探测器的时间重合,其FWHM没有比1ns更差。 E-D检测器单元的类似测量显示时间(小于0.6ns)和幅度(以1 mev的能量为15%)的分辨率,该分辨率满足粒子分选和测定能量的实验要求。测量来自LFS-8晶体的放射性的E检测器的内在背景。还确定了与从RA-226源源照射的两种或更多个电子检测器单元同时触发的相对数量的事件。该值可能有助于估计真实实验中的随机巧合的数量。

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