论文标题

精细粒度光学分离的塑料闪烁体元件的添加剂制造

Additive manufacturing of fine-granularity optically-isolated plastic scintillator elements

论文作者

Berns, S., Boillat, E., Boyarintsev, A., De Roeck, A., Dolan, S., Gendotti, A., Grynyov, B., Hugon, S., Kose, U., Kovalchuk, S., Li, B., Rubbia, A., Sibilieva, T., Sgalaberna, D., Weber, T., Wuthrich, J., Zhao, X. Y.

论文摘要

塑料闪光灯探测器用于高能量物理学以及医学诊断成像,强子治疗的光束监测,MUON断层扫描,dosimetry和许多安全应用。为了结合粒子跟踪和量热法,有必要建立具有三维粒度的探测器,即闪烁体的小素体彼此光学地隔离。最近,3DET协作证明了基于3D Print Pollestyrene的闪光灯的可能性,其光输出性能接近使用标准生产方法获得的功能。在本文中,在提供了开发的闪烁体的进一步表征之后,我们显示了第一个由白色反射材料完全分离的塑料闪烁体立方体的第一个矩阵,该矩阵完全分离出,完全用融合的沉积建模印刷。这是第一个真实粒子检测器的3D打印的主要里程碑。还提供了有关结果以及研发中的下一步的讨论。

Plastic scintillator detectors are used in high energy physics as well as for diagnostic imaging in medicine, beam monitoring on hadron therapy, muon tomography, dosimetry and many security applications. To combine particle tracking and calorimetry it is necessary to build detectors with three-dimensional granularity, i.e. small voxels of scintillator optically isolated from each other. Recently, the 3DET collaboration demonstrated the possibility to 3D print polystyrene-based scintillators with a light output performance close to that obtained with standard production methods. In this article, after providing a further characterization of the developed scintillators, we show the first matrix of plastic scintillator cubes optically separated by a white reflector material entirely 3D printed with fused deposition modeling. This is a major milestone towards the 3D printing of the first real particle detector. A discussion of the results as well as the next steps in the R&D is also provided.

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