Pseudo-random time modulation technique for neutron diffraction instruments on compact accelerator-driven neutron sources

IF 1 Q3 NUCLEAR SCIENCE & TECHNOLOGY
F. Ott
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引用次数: 0

Abstract

Time modulation methods are routinely used on neutron scattering time-of-flight instruments, which exploit the time structure of neutron pulses for energy determination. In the past, complex time modulation methods were proposed, either to maximize the neutron flux which can be used, or to increase the energy resolution of the measurements. In this article, we explore the possibilities offered by such methods and in particular random modulation using statistical choppers to improve the performances of the DIoGENE scattering instrument installed around the IPHI-neutron CANS source at Saclay. We conclude that when the source is operated in continuous mode, the implementation of a statistical chopper is very efficient to perform either metallurgical studies such as strain scanning or phase transition studies. Random modulation techniques may be easily and efficiently implemented because the high capacity of modern computers enables high-speed data processing from large surface pixelated detectors.
小型加速器驱动中子源中子衍射仪的伪随机时间调制技术
时间调制方法通常用于中子散射飞行时间仪器,它利用中子脉冲的时间结构来确定能量。过去,为了最大限度地利用中子通量或提高测量的能量分辨率,提出了复杂的时间调制方法。在本文中,我们探讨了这些方法提供的可能性,特别是使用统计斩波随机调制来提高安装在萨克雷ihi -中子can源周围的DIoGENE散射仪的性能。我们得出的结论是,当源在连续模式下操作时,统计斩波器的实施对于执行冶金研究(如应变扫描或相变研究)非常有效。随机调制技术可以很容易和有效地实现,因为现代计算机的高容量能够从大型表面像素化探测器进行高速数据处理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Neutron Research
Journal of Neutron Research NUCLEAR SCIENCE & TECHNOLOGY-
CiteScore
2.30
自引率
9.10%
发文量
23
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