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Simulation of Charged Particle Trajectories in the Neutron Decay Correlation Experiment abBA

机译:中子衰变相关实验abBA中带电粒子轨迹的模拟

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摘要

The proposed neutron decay correlation experiment, abBA, will directly detect the direction of emission of decay protons and electrons as well as providing spectroscopic information for both particles. In order to provide this information, the abBA experiment incorporates spatially varying electric and magnetic fields. We report on detailed simulations of the decay particle trajectories in order to assess the impact of various systematic effects on the experimental observables. These include among others; adiabaticity of particle orbits, tracking of orbits, reversal of low energy protons due to inhomogeneous electric field, and accuracy of proton time of flight measurements. Several simulation methods were used including commercial software (Simion), custom software, as well as analytical tools based on the use of adiabatic invariants. Our results indicate that the proposed field geometry of the abBA spectrometer will be substantially immune to most systematic effects and that transport calculations using adiabatic invariants agree well with solution of the full equations of motion.
机译:拟议的中子衰变相关实验abBA,将直接检测衰变质子和电子的发射方向,并为两个粒子提供光谱信息。为了提供此信息,abBA实验结合了空间变化的电场和磁场。我们报告了衰变粒子轨迹的详细模拟,以便评估各种系统效应对实验可观察物的影响。其中包括;粒子轨道的绝热性,轨道的跟踪,由于不均匀电场而引起的低能质子的逆转以及质子飞行时间测量的准确性。使用了几种模拟方法,包括商业软件(Simion),定制软件以及基于绝热不变量使用的分析工具。我们的结果表明,拟议的abBA光谱仪的场几何形状将基本不受大多数​​系统效应的影响,并且使用绝热不变量进行的输运计算与完整运动方程的求解非常吻合。

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