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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Neutronic design and measured performance of the Low Energy Neutron Source (LENS) target moderator reflector assembly
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Neutronic design and measured performance of the Low Energy Neutron Source (LENS) target moderator reflector assembly

机译:低能量中子源(LENS)目标减速器反射器组件的中子学设计和测量性能

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摘要

The Low Energy Neutron Source (LENS) is an accelerator-based pulsed cold neutron facility under construction at the Indiana University Cyclotron Facility (IUCF). The idea behind LENS is to produce pulsed cold neutron beams starting with ~MeV neutrons from (p,n) reactions in Be which are moderated to meV energies and extracted from a small solid angle for use in neutron instruments which can operate efficiently with relatively broad (~1 ms) neutron pulse widths. Although the combination of the features and operating parameters of this source is unique at present, the neutronic design possesses several features similar to those envisioned for future neutron facilities such as long-pulsed spallation sources (LPSS) and very cold neutron (VCN) sources. We describe the underlying ideas and design details of the target/moderator/reflector system (TMR) and compare measurements of its brightness, energy spectrum, and emission time distribution under different moderator configurations with MCNP simulations. Brightness measurements using an ambient temperature water moderator agree with MCNP simulations within the 20% accuracy of the measurement. The measured neutron emission time distribution from a solid methane moderator is in agreement with simulation and the cold neutron flux is sufficient for neutron scattering studies of materials. We describe some possible modifications to the existing design which would increase the cold neutron brightness with negligible effect on the emission time distribution.
机译:低能量中子源(LENS)是印第安纳大学回旋加速器设施(IUCF)正在建设中的基于加速器的脉冲冷中子设施。 LENS的思想是从Be的(p,n)反应中产生的〜MeV中子开始产生脉冲冷中子束,这些中子被缓和到meV能量并从一个小的立体角提取出来,以用于中子仪器,该中子仪器可以在相对较宽的范围内有效地工作(〜1 ms)中子脉冲宽度。尽管此源的特征和操作参数的组合目前是唯一的,但中子学设计具有与未来中子设施所设想的特征相似的若干特征,例如长脉冲散裂源(LPSS)和超冷中子(VCN)源。我们描述了目标/减速器/反射器系统(TMR)的基本思想和设计细节,并通过MCNP模拟比较了在不同减速器配置下其亮度,能谱和发射时间分布的测量结果。使用环境温度水调节剂进行的亮度测量在20%的测量精度内与MCNP模拟一致。从固体甲烷减速器测得的中子发射时间分布与模拟相符,冷中子通量足以进行材料的中子散射研究。我们描述了对现有设计的一些可能修改,这些修改将增加冷中子亮度,而对发射时间分布的影响可忽略不计。

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