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Investigation of background reduction techniques for the NeuLAND neutron detector

机译:NeuLAND中子探测器的背景还原技术研究

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NeuLAND is the neutron detector used by the (RB)-B-3 collaboration, which is part of the NUSTAR collaboration at the FAIR facility. NeuLAND is used for the detection of fast neutrons in the range of 200 MeV- 1000 MeV and is composed of plastic scintillators. Neutrons can undergo hadronic scattering with the scintillator material to produce charged particles, which in turn can be detected by their scintillation light. The high granularity of the detector allows for an accurate reconstruction of the primary interaction points of the neutrons. With these interaction points and with the information from the other detectors in the (RB)-B-3 setup, the reaction at the target can be kinematically reconstructed. This reconstruction is the tool that enables the (RB)-B-3 collaboration to study complex reactions. However, particles produced through reactions of the incoming radioactive beam with other (RB)-B-3 detectors may also enter NeuLAND's active volume and generate a significant background. In this paper, Monte Carlo simulations are utilized to explore possible reduction techniques of this background. In particular, the reduction of the charged-particle component of this background through the use of a VETO wall is explored for the initial setup of the (RB)-B-3 experiment. The list of physics processes considered and their implementation in the simulations are tested against experimental data to ensure that conclusions about the background reduction are meaningful. Extensive simulations show that the use of a VETO wall is, in many situations, not necessary.
机译:NeuLAND是(RB)-B-3合作所使用的中子探测器,这是FAIR工厂NUSTAR合作的一部分。 NeuLAND用于检测200 MeV- 1000 MeV范围内的快中子,由塑料闪烁体组成。中子可以通过闪烁体材料发生强子散射,产生带电粒子,而带电粒子又可以通过其闪烁光检测到。检测器的高粒度允许准确重建中子的主要相互作用点。利用这些相互作用点以及(RB)-B-3装置中其他检测器的信息,可以在运动学上重建目标反应。这种重建是使(RB)-B-3合作研究复杂反应的工具。但是,通过入射的放射性束与其他(RB)-B-3探测器的反应产生的颗粒也可能进入NeuLAND的活动体积并产生明显的背景。在本文中,蒙特卡罗模拟被用来探索这种背景下可能的还原技术。尤其是,探索了通过使用VETO壁来减少这种背景的带电粒子成分,以用于(RB)-B-3实验的初始设置。针对实验数据测试了考虑的物理过程列表及其在模拟中的实现,以确保有关背景减少的结论有意义。大量的模拟表明,在许多情况下,不必使用VETO墙。

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