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散裂中子源广角范围斩波器光谱仪ARCS的设计与运行

Design and operation of the wide angular-range chopper spectrometer ARCS at the Spallation Neutron Source.

作者信息

Abernathy D L, Stone M B, Loguillo M J, Lucas M S, Delaire O, Tang X, Lin J Y Y, Fultz B

机构信息

Neutron Scattering Sciences Division, Oak Ridge National Laboratory, Oak Ridge, Tennessee 37831, USA.

出版信息

Rev Sci Instrum. 2012 Jan;83(1):015114. doi: 10.1063/1.3680104.

Abstract

The wide angular-range chopper spectrometer ARCS at the Spallation Neutron Source (SNS) is optimized to provide a high neutron flux at the sample position with a large solid angle of detector coverage. The instrument incorporates modern neutron instrumentation, such as an elliptically focused neutron guide, high speed magnetic bearing choppers, and a massive array of (3)He linear position sensitive detectors. Novel features of the spectrometer include the use of a large gate valve between the sample and detector vacuum chambers and the placement of the detectors within the vacuum, both of which provide a window-free final flight path to minimize background scattering while allowing rapid changing of the sample and sample environment equipment. ARCS views the SNS decoupled ambient temperature water moderator, using neutrons with incident energy typically in the range from 15 to 1500 meV. This range, coupled with the large detector coverage, allows a wide variety of studies of excitations in condensed matter, such as lattice dynamics and magnetism, in both powder and single-crystal samples. Comparisons of early results to both analytical and Monte Carlo simulation of the instrument performance demonstrate that the instrument is operating as expected and its neutronic performance is understood. ARCS is currently in the SNS user program and continues to improve its scientific productivity by incorporating new instrumentation to increase the range of science covered and improve its effectiveness in data collection.

摘要

散裂中子源(SNS)的宽角范围斩波器光谱仪ARCS经过优化,可在样品位置提供高中子通量,并具有大立体角的探测器覆盖范围。该仪器采用了现代中子仪器,如椭圆聚焦中子导管、高速磁轴承斩波器和大量的3He线性位置灵敏探测器阵列。该光谱仪的新颖之处包括在样品室和探测器真空室之间使用大型闸阀,以及将探测器放置在真空中,这两者都提供了无窗的最终飞行路径,以尽量减少背景散射,同时允许快速更换样品和样品环境设备。ARCS观察SNS解耦的环境温度水慢化剂,使用的中子入射能量通常在15至1500毫电子伏特范围内。这个能量范围,再加上大的探测器覆盖范围,使得可以对粉末和单晶样品中的凝聚态激发进行各种各样的研究,如晶格动力学和磁性。将早期结果与仪器性能的分析和蒙特卡罗模拟进行比较表明,该仪器运行正常,其中子学性能已被了解。ARCS目前正在参与SNS用户计划,并通过引入新仪器来扩大所涵盖的科学范围并提高其数据收集效率,从而继续提高其科学产出率。

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