Heat transfer analysis study for the design of the New Polychromatic Beam Neutron Reflectometer CANDOR (Chromatic Analysis Neutron Diffractometer Or Reflectometer).

IF 1 Q3 NUCLEAR SCIENCE & TECHNOLOGY
Lior Uzan, Juscelino B Leão, Christoph Brocker, Daniel Mattes, Tanya Dax
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引用次数: 0

Abstract

A newly developed polychromatic beam neutron reflectometer CANDOR (Chromatic Analysis Neutron Diffractometer Or Reflectometer) on NG-1 at the NIST Center for Neutron research (NCNR) utilizes a wavelength-sensitive neutron detector consisting of 324 analyzing highly-oriented pyrolytic graphite (HOPG) crystals positioned sequentially in rows. Known for having a small thermal diffuse scattering cross section, HOPG crystals can lead to low signal-to-noise ratios in wavelength-sensitive detectors such as CANDOR. Even though it is possible to mathematically separate the desired signal from thermal diffuse scattering; by cooling the detector array of HOPG crystals in order to minimize the Debye Waller effect generates a better solution to this problem. In this heat transfer analysis study we show, within the instrument design constrains and thermodynamic considerations, technical feasibility and test results for the development of the New Polychromatic Beam Neutron Reflectometer CANDOR (Chromatic Analysis Neutron Diffractometer Or Reflectometer) at the NIST Center for Neutron Research.

设计新型多色束中子反射计CANDOR(彩色分析中子衍射计或反射计)的传热分析研究
NIST中子研究中心(NCNR)在NG-1上新开发的多色束中子反射仪CANDOR(色分析中子衍射仪或反射仪)利用由324个波长敏感中子探测器组成的高取向热解石墨(HOPG)晶体依次排列。众所周知,HOPG晶体具有小的热漫射散射截面,可以在波长敏感的探测器(如CANDOR)中导致低信噪比。即使在数学上可以从热扩散散射中分离出期望的信号;通过对探测器阵列的HOPG晶体进行冷却,使德拜-沃勒效应最小化,可以较好地解决这一问题。在这项传热分析研究中,我们展示了在仪器设计限制和热力学考虑的情况下,NIST中子研究中心开发的新型多色束中子反射计CANDOR(色分析中子衍射计或反射计)的技术可行性和测试结果。
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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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