欧洲散裂源中子飞行时间后向散射光谱仪的导引设计优化

IF 1.3 Q3 INSTRUMENTS & INSTRUMENTATION
F. J. Villacorta, D. M. Rodríguez, M. Bertelsen, H. Bordallo
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引用次数: 3

摘要

为了促进MIRACLES的科学应用,提出了一种优化的中子导向系统——欧洲散裂源(ESS)飞行时间后向散射光谱仪。与之前的概念设计相比,该系统的研究结果增强了冷中子的输运,在从源到样品的162.5 m距离上,波长范围从λ = 2 Å到20 Å。这保持了仪器不受干扰的主要焦点,即在大动态范围内进行准弹性和非弹性中子散射(QENS和INS)实验,同时进行能量增益和能量损失方面的实验。为了更好地收集来自源的冷中子并将它们引导到样品位置,垂直几何形状被调整为弹道椭圆轮廓的改编版本。它的水平几何结构被设想为:(i)保持仪器的高分辨率性能,(ii)最小化来自快中子和热中子的背景。为了满足第一个要求,在脉冲整形斩波器位置实现了窄导段。为了实现第二个目标,选择了一个弯曲的波导段来抑制波长λ < 2 Å的中子。随后的相空间裁剪提供了冷中子沿光束线的有效输运,以达到3 × 3 cm2的样品。最后,进行额外的计算,以提供潜在的升级,与最后的部分交换,集中在大约1 × 1 cm2的样本;该方案预计在这1平方厘米的样品面积内通量将增加70%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimization of the Guide Design of MIRACLES, the Neutron Time-of-Flight Backscattering Spectrometer at the European Spallation Source
To boost the science case of MIRACLES, the time-of-flight backscattering spectrometer at the European Spallation Source (ESS), an optimized neutron guide system, is proposed. This systematic study resulted in an enhancement in the transport of cold neutrons, compared with the previous conceptual design, with wavelengths ranging from λ = 2 Å to 20 Å along the 162.5-m distance from source to sample. This maintained the undisturbed main focus of the instrument, viz, to carry out quasielastic and inelastic neutron scattering (QENS and INS) experiments on a large dynamic range and for both energy-gain and energy-loss sides. To improve the collection of cold neutrons from the source and direct them to the sample position, the vertical geometry was adjusted to an adapted version of a ballistic elliptical profile. Its horizontal geometry was conceived to: (i) keep the high-resolution performance of the instrument, and (ii) minimize the background originating from fast and thermal neutrons. To comply with the first requirement, a narrow guide section at the pulse shaping chopper position has been implemented. To fulfil the second, a curved guide segment has been chosen to suppress neutrons with wavelengths λ < 2 Å. Subsequent tailoring of the phase space provided an efficient transport of cold neutrons along the beamline to reach a 3 × 3 cm2 sample. Finally, additional calculations were performed to present a potential upgrade, with the exchange of the final segment, to focus on samples of approximately 1 × 1 cm2; the proposal anticipates a flux increase of 70% in this 1 cm2 sample area.
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来源期刊
CiteScore
2.80
自引率
28.60%
发文量
27
审稿时长
11 weeks
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