高强度中子源在欧洲散裂源的发展

IF 1 Q3 NUCLEAR SCIENCE & TECHNOLOGY Journal of Neutron Research Pub Date : 2020-02-10 DOI:10.3233/jnr-200159
V. Santoro, K. Andersen, D. Dijulio, E. Klinkby, T. Miller, D. Milstead, G. Muhrer, M.Stroble, A. Takibayev, L. Zanini, O. Zimmer
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引用次数: 13

摘要

正在瑞典隆德建造的欧洲散裂源将为用户社区提供前所未有的亮度中子源。到2025年,一套由15台仪器组成的高亮度慢化剂系统将被放置在散裂目标上方。ESS基础设施由质子直线加速器、目标站和仪器大厅组成,允许在散裂目标下方实施第二个源。我们建议开发一种具有高强度慢化剂的第二中子源,它能够(1)提供更大的总冷中子通量,(2)在冷(4-10 Å)、极冷(10-40 Å)和超冷(100 Å)中子的光谱区域提供波长更长的高强度,而不是由顶部慢化剂提供的热中子和冷中子。在单一设施中提供前所未有的亮度,通量和光谱范围,这次升级将使ESS成为世界上最通用的中子源,并将进一步加强欧洲在中子科学方面的领导地位。新的光源将促进凝聚态物质研究的几个领域,如成像和自旋回波,并将为自然规律的基础物理研究提供杰出的机会,其精度在其他任何地方都无法实现。该系统的核心是体积液态氘慢化剂。基于成熟的技术,将在详细的工程研究中优化其性能。这个慢化剂将由次级源补充,以提供极冷和超冷中子的强束。
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Development of high intensity neutron source at the European Spallation Source
The European Spallation Source being constructed in Lund, Sweden will provide the user community with a neutron source of unprecedented brightness. By 2025, a suite of 15 instruments will be served by a high-brightness moderator system placed above the spallation target. The ESS infrastructure, consisting of the proton linac, the target station, and the instrument halls, allows for implementation of a second source below the spallation target. We propose to develop a second neutron source with a high-intensity moderator able to (1) deliver a larger total cold neutron flux, (2) provide high intensities at longer wavelengths in the spectral regions of Cold (4–10 Å), Very Cold (10–40 Å), and Ultra Cold (several 100 Å) neutrons, as opposed to Thermal and Cold neutrons delivered by the top moderator. Offering both unprecedented brilliance, flux, and spectral range in a single facility, this upgrade will make ESS the most versatile neutron source in the world and will further strengthen the leadership of Europe in neutron science. The new source will boost several areas of condensed matter research such as imaging and spin-echo, and will provide outstanding opportunities in fundamental physics investigations of the laws of nature at a precision unattainable anywhere else. At the heart of the proposed system is a volumetric liquid deuterium moderator. Based on proven technology, its performance will be optimized in a detailed engineering study. This moderator will be complemented by secondary sources to provide intense beams of Very- and Ultra-Cold Neutrons.
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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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