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γ-Ray position reconstruction in large monolithic LaCl_3(Ce) crystals with SiPM readout

机译:大型整体LACL_3(CE)晶体中的γ射线位置重建,SIPM读数

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摘要

We report on the spatial response characterization of large LaCl3(Ce) monolithic crystals optically coupled to 8 x 8 pixel silicon photomultiplier (SiPM) sensors. A systematic study has been carried out for 511 keV gamma-rays using three different crystal thicknesses of 10 mm, 20 mm and 30 mm, all of them with planar geometry and a base size of 50 x 50 mm(2). In this work we investigate and compare two different approaches for the determination of the main gamma-ray hit location. On one hand, methods based on the fit of an analytical model for the scintillation light distribution provide the best results in terms of linearity and field of view, with spatial resolutions close to similar to 1 mm FWHM. On the other hand, position reconstruction techniques based on neural networks provide similar linearity and field-of-view, becoming the attainable spatial resolution similar to 3 mm FWHM. For the third space coordinate z or depth-of-interaction we have implemented an inverse linear calibration approach based on the cross-section of the measured scintillation-light distribution at a certain height. The detectors characterized in this work are intended for the development of so-called Total Energy Detectors with Compton imaging capability (i-TED), aimed at enhanced sensitivity and selectivity measurements of neutron capture cross sections via the time-of-flight (TOF) technique.
机译:我们报告了光学耦合到8×8像素硅光电倍增器(SIPM)传感器的大LACL3(CE)单片晶体的空间响应表征。使用三种不同的晶体厚度为10mm,20mm和30mm,所有的晶体厚度,所有与平面的几何形状和50×50mm(2)的基尺寸为511keV伽马射线进行了系统研究。在这项工作中,我们调查并比较两种不同的方法来确定主伽马射线击中位置。一方面,基于闪烁光分布的分析模型的适合的方法提供了线性度和视野的最佳结果,其空间分辨率接近于类似于1 mm的fwhm。另一方面,基于神经网络的位置重建技术提供了类似的线性和视野,成为可实现的空间分辨率,类似于3mm fwhm。对于第三空间坐标z或相互作用,我们已经基于测量的闪烁光分布在一定高度的横截面上实现了一种反线性校准方法。在该工作中表征的探测器用于开发具有康普顿成像能力(I-TED)的所谓的总能量探测器,旨在通过飞行时间(TOF)增强了中子捕获横截面的灵敏度和选择性测量技术。

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