Geant4模拟塑料闪烁体的固有时间分辨率和效率研究

IF 1.2 4区 物理与天体物理 Q3 PHYSICS, MULTIDISCIPLINARY Revista Mexicana De Fisica Pub Date : 2023-07-04 DOI:10.31349/revmexfis.69.040901
Edmundo Márquez Quintos, C. H. Zepeda Fernández, L. F. Rebolledo Herrera, Eduardo Moreno Barbosa
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引用次数: 0

摘要

时间分辨率(TR)是探测器最重要的特性之一。在闪烁体的特殊情况下,光的收集也很重要,这取决于光传感器(Scorer)的敏感区域。通常,光电倍增管的Scorer(PMT)大于硅光电倍增管(SiPM)。其他差异是操作电压、它们的尺寸和成本,在某些情况下,如果需要小空间,则很难放置大尺寸的PMT,在这种情况下,优选使用SiPM。TR的值还取决于振荡器的尺寸和几何形状、光电传感器和电子部件的数量。在这项工作中,我们研究了6X6mm2的SiPM到Scorer的平均光学光子到达时间分布(AT)。我们将AT的变化定义为固有时间分辨率(ITR)。在Geant4中,我们模拟了两种不同的几何形状:方形和六边形,用于连接到一个Scorer的BC-404塑料闪烁体。模拟的源为Sr90、Co60、Cs137、Na22和1GeV的μ-。结果表明,AT和ITR取决于塑料闪烁体的几何形状和尺寸、Scorer的位置、入射粒子及其能量。然后,ITR和TR对于检测器来说不是常数。最后,我们展示了AT与粒子入射沉积能量之间的关系,在实验中,AT与探测器的响应时间事件和入射粒子沉积的电荷分别相关。
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Intrinsic time resolution and efficiency study for simulated scintillators plastics with Geant4
The time resolution (TR) is one of the most important characteristic of a detector. The particular case of a scintillator, the collection of light also is important, it depends of the sensitive area of the photo-sensor (Scorer). Normally, the Scorer of Photomultipliers Tubes (PMTs) is greater than the Scorer of Silicon Photomultipliers (SiPMs). Other differences are the voltage of operation, their size and cost, in some cases, the large size of PMTs can be difficult to place, if small space is required, in which case, it is preferable to use SiPMs. The value of TR also depends of the size and geometry of thescintillator, number of photo-sensors and the electronic part.In this work, we study the mean optical photon arrival time distribution (AT) to a Scorer from a SiPM of 6X6 mm2. We define the variation of AT as the intrinsic time resolution (ITR). In Geant4, we simulated two different geometries: square and hexagonal, for a BC-404 plastic scintillator coupled to one Scorer. The sources simulated were Sr90, Co60, Cs137, Na22 and μ- of 1 GeV. It is shown that AT and ITR depends of the geometry and size of the plastic scintillator, the location of the Scorer, the incident particle and its energy. Then, the ITR and therefore the TR is not a constant for a detector. Finally, we show the relation between AT and the deposited energy by the particle incident, which are related in the experiment to the response time event of the detector and the deposited charge by the incident particle, respectively.
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来源期刊
Revista Mexicana De Fisica
Revista Mexicana De Fisica 物理-物理:综合
CiteScore
2.20
自引率
11.80%
发文量
87
审稿时长
4-8 weeks
期刊介绍: Durante los últimos años, los responsables de la Revista Mexicana de Física, la Revista Mexicana de Física E y la Revista Mexicana de Física S, hemos realizado esfuerzos para fortalecer la presencia de estas publicaciones en nuestra página Web ( http://rmf.smf.mx).
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