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Neutron ray-tracing simulations and data analysis with RESTRAX

机译:使用RESTRAX进行中子射线追踪模拟和数据分析

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We review the methods of simulating the neutron optics of three-axis spectrometers to optimize their resolution and luminosity and to interpret experimental data collected with them. The program package RESTRAX includes both a high-speed analytical (Gaussian) convolution algorithm and a Monte Carlo ray-tracing code providing enhanced accuracy in description of most of the spectrometer components. The program is designed for a fixed spectrometer layout, with emphasis on the choice of a complete set of usual neutron optical devices and on their realistic representation. The fixed layout permits to generate a highly optimized Fortran code, producing sets of 10~3 - 10~4 successful events per second. This speed on the turn allows for a truly interactive work when designing a new instrument or refining a model describing the scattering behavior of a sample under investigation. As an illustration, we give several examples of TAS configurations, including high-luminosity focusing arrangements and multianalyzer setups as well a demonstration of the data fitting part of RESTRAX in the case of magnetic excitations.
机译:我们回顾了模拟三轴光谱仪的中子光学的方法,以优化其分辨率和光度,并解释用它们收集的实验数据。程序包RESTRAX包括高速分析(高斯)卷积算法和蒙特卡洛射线追踪代码,可提高大多数光谱仪组件描述的准确性。该程序是为固定的光谱仪布局而设计的,着重于选择一套完整的常规中子光学装置及其现实表示。固定的布局允许生成高度优化的Fortran代码,每秒生成10〜3-10〜4个成功事件的集合。转弯时的这种速度允许在设计新仪器或完善描述被研究样品的散射行为的模型时进行真正的交互工作。作为说明,我们给出了TAS配置的几个示例,包括高亮度聚焦布置和多分析仪设置,以及在磁激励情况下RESTRAX的数据拟合部分的演示。

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