首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Probing static and dynamic correlations in matter under extreme conditions: Concept of multi-purpose instrument at the European Spallation Source
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Probing static and dynamic correlations in matter under extreme conditions: Concept of multi-purpose instrument at the European Spallation Source

机译:在极端条件下探测物质中的静态和动态相关性:欧洲散裂源上的多功能仪器概念

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摘要

Properties of neutrons, in particular high penetration depth for most materials, make them very powerful for studying matter under extreme conditions, e.g. high pressures or magnetic fields. A new generation of high power spallation neutron sources, such as the existing SNS and J-Parc and the coming ESS, brings neutron scattering in extreme environments to a completely new level. Indeed, measurements of smaller samples, use of more complex equipment and neutron instruments optimized for operation with extreme sample environment become readily available. The latter is actually one of the most important factors contributing to the field. In this paper a novel concept of an instrument for extreme environments at the ESS is presented. The main feature of the Extreme Conditions Instrument is its multi-purpose nature. It is not optimized for a single scattering technique but combines in a balanced way elastic (Diffraction and Small Angle Neutron Scattering) and inelastic capabilities. Such a concept enables effective combination of neutron scattering with a state-of-the-art sample environment independent of the complexity, dimensions and transportability of the latter. In addition, all available types of neutron experiments can be performed at the same thermodynamic conditions. The instrument concept has been verified by Monte-Carlo ray-tracing simulations and the results for instrument operation modes are compared with world-class instruments.
机译:中子的特性,特别是大多数材料的高穿透深度,使它们在研究极端条件下(例如,原子力)非常强大。高压或磁场。新一代的高功率散裂中子源,例如现有的SNS和J-Parc以及即将推出的ESS,将极端环境中的中子散射提高到一个全新的水平。实际上,更容易获得较小样品的测量,使用更复杂的设备和为在极端样品环境下运行而优化的中子仪器。后者实际上是对该领域做出贡献的最重要因素之一。在本文中,提出了一种用于ESS极端环境的仪器的新颖概念。极限条件仪器的主要特点是其多功能性。它不是针对单个散射技术进行优化的,而是以平衡的方式结合了弹性(衍射和小角度中子散射)和非弹性能力。这样的概念使中子散射与最新的样品环境有效地结合在一起,而与样品的复杂性,尺寸和可运输性无关。另外,所有可用类型的中子实验都可以在相同的热力学条件下进行。该仪器的概念已通过蒙特卡洛射线追踪仿真验证,并将仪器操作模式的结果与世界一流的仪器进行了比较。

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