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Simulations of the nuclear recoil head-tail signature in gases relevant to directional dark matter searches

机译:模拟与定向暗物质搜索有关的气体中的核反冲头尾特征

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摘要

We present the first detailed simulations of the so-called head-tail effect of nuclear recoils in gas, the presence of which is vital to directional WIMP dark matter searches. We include comparison simulations of the range and straggling of carbon, sulphur and fluorine recoils in low pressure gas. However, the prime focus is a detailed investigation of carbon and sulphur recoils in 40 Torr negative ion carbon disulfide, a gas proposed for use in large scale directional detectors. The focus is to determine whether the location of the majority of the ionization charge released and observed from a recoil track in carbon disulfide is at the beginning (tail) of the track, at the end (head) or evenly distributed. We used the SRIM simulation program, together with a purpose-written Monte Carlo generator to model production of ionizing pairs, diffusion and basic readout geometries relevant to potential real detector scenarios, such as under development for the DRIFT experiment. The results indicate the likely existence of a head-tail track asymmetry but with a magnitude critically influenced by several competing factors, notably the W-value assumed, the drift distance and diffusion, and the recoil energy.
机译:我们介绍了气体中核后坐力的所谓首尾效应的第一个详细模拟,其存在对定向WIMP暗物质搜索至关重要。我们包括对低压气体中碳,硫和氟反冲力的范围和散布的比较模拟。但是,主要重点是对40 Torr负离子二硫化碳中的碳和硫反冲进行详细研究,该气体被提议用于大规模定向探测器。重点是确定从二硫化碳反冲轨道释放并观察到的大部分电离电荷的位置是在轨道的起点(尾部),终点(头部)还是均匀分布。我们使用了SRIM模拟程序,以及专门编写的蒙特卡洛发生器,以对与潜在的实际检测器场景相关的电离对,扩散和基本读数几何的产生(例如,正在为DRIFT实验进行开发)进行建模。结果表明,可能存在头尾轨迹不对称,但幅度受到几个竞争因素的严重影响,这些因素主要是假设的W值,漂移距离和扩散以及反冲能量。

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