Bielecki J, Drozdowicz K, Dworak D, Igielski A, Janik W, Kulinska A, Marciniak L, Scholz M, Turzanski M, Wiacek U, Woznicka U, Wójcik-Gargula A
Institute of Nuclear Physics Polish Academy of Sciences (IFJ PAN), Krakow, Poland.
Radiat Prot Dosimetry. 2018 Aug 1;180(1-4):427-431. doi: 10.1093/rpd/ncx277.
Plastic organic scintillators such as the blue-emitting BCF-12 are versatile and inexpensive tools. Recently, BCF-12 scintillators have been foreseen for investigation of the spatial distribution of neutrons emitted from dense magnetized plasma. For this purpose, small-area (5 mm × 5 mm) detectors based on BCF-12 scintillation rods and Hamamatsu photomultiplier tubes were designed and constructed at the Institute of Nuclear Physics. They will be located inside the neutron pinhole camera of the PF-24 plasma focus device. Two different geometrical layouts and approaches to the construction of the scintillation element were tested. The aim of this work was to determine the efficiency of the detectors. For this purpose, the experimental investigations using a neutron generator and a Pu-Be source were combined with Monte Carlo computations using the Geant4 code.
诸如发射蓝光的BCF - 12这类塑料有机闪烁体是多功能且廉价的工具。最近,有人预见BCF - 12闪烁体可用于研究致密磁化等离子体发射中子的空间分布。为此,核物理研究所设计并制造了基于BCF - 12闪烁棒和滨松光电倍增管的小面积(5毫米×5毫米)探测器。它们将放置在PF - 24等离子体聚焦装置的中子针孔相机内部。测试了两种不同的几何布局以及闪烁元件的构建方法。这项工作的目的是确定探测器的效率。为此,将使用中子发生器和钚 - 铍源的实验研究与使用Geant4代码的蒙特卡罗计算相结合。