RPI直线加速器的热截面测量[幻灯片]

D. Fritz, Y. Danon, A. Ney, P. Brain, Sukhjinder Singh, K. Cook, Benjamin Wang, M. Rapp, T. Trumbull, M. Zerkle, J. Holmes, C. Chapman, G. Arbanas, Jesse M. Brown, K. Ramić
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摘要

最近,一种冷慢化剂被设计和开发用于伦斯勒理工学院直线加速器(RPI LINAC)。事实证明,这种冷减速剂可以轻松安全地耦合到现有的中子产生目标上,同时通过将聚乙烯冷却到29 K,将中子通量提高到0.02 eV以下的8倍。这种冷调节功能可以显著提高低于0.02 eV的计数统计数据,这在以前是不可能的,因为信号与背景比很差。此外,对新冷慢化系统的能量分辨率进行了测试,发现该系统能够很容易地分辨出Ta-181中4和10 eV的共振,同时也能清楚地分辨出Be金属中低于0.01 eV的Bragg边缘。随着冷聚乙烯慢化剂的设计和开发,在热区对聚乙烯、聚苯乙烯、有机玻璃和氢化钇进行了一系列的热总截面测量。这些测量有助于验证0.0005 - 1 eV能量范围内的热散射定律(TSL)评估。对聚乙烯和聚苯乙烯进行了两组实验,一组是增强型热靶(ETT),另一组是增强型热靶加新型冷慢化剂(ETTC)。氢化钇和有机玻璃的测量仅用ETTC进行。聚乙烯的测量有助于在使用ETTC时验证数据处理方法,同时将聚乙烯的测量范围扩展到0.0005 eV。测量了两种不同的有机玻璃,即有机玻璃G和有机玻璃G- uvt,以及两种不同浓度的氢化钇,H/Y = 1.85和1.68。总体而言,所有材料大体上符合其ENDF/B-VIII.0TSL评价,尽管注意到一些差异。在氢化钇的情况下,可以清楚地看到氢截面的高能振荡和钇截面的低能布拉格边。这些测量代表了第一次总截面测量,涵盖了聚苯乙烯和氢化钇从0.0005 - 1 eV的整个热区。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thermal Cross Section Measurements At The RPI LINAC [Slides]
Recently, a cold moderator was designed and developed for use at the Rensselaer Polytechnic Institute Linear Accelerator (RPI LINAC). This cold moderator proved to easily and safely couple to an existing neutron producing target, while enhancing neutron flux below 0.02 eV by up to a factor of 8 by cooling polyethylene down to 29 K. This cold moderator capability allowed for significantly improved counting statistics below 0.02 eV not previously possible due to a poor signal to background ratio. Additionally, testing was performed to characterize the energy resolution of the new cold moderator system and found the system easily capable of resolving resonances in Ta-181 at 4 and 10 eV, while also clearly resolving the Bragg edges found in Be metal below 0.01 eV. Following the design and development of a cold polyethylene moderator, a series of thermal total cross section measurements were performed for polyethylene, polystyrene, Plexiglas and yttrium hydride in the thermal region. These measurements serve to help validate thermal scattering law (TSL) evaluations in the 0.0005 – 1 eV energy range. For polyethylene and polystyrene, two sets of experiments were performed – one with the Enhanced Thermal Target (ETT) and another with the ETT plus the new cold moderator capability (ETTC). The yttrium hydride and Plexiglas measurements were only performed with the ETTC. The measurements for polyethylene help to validate the data processing methodology when using the ETTC, while extending the measured range of polyethylene down to 0.0005 eV. Two different Plexiglas, Plexiglas G and Plexiglas G-UVT, and two different concentrations of yttrium hydride, H/Y = 1.85 and 1.68, were measured. Overall, all materials had generally good agreement with their ENDF/B-VIII.0 TSL evaluations, though some discrepancies were noticed. In the case of the yttrium hydride, the high energy oscillations in the hydrogen cross section and the low energy Bragg edges in the yttrium cross section were clearly seen. These measurements represent the first total cross section measurements that encompass the entire thermal region from 0.0005 – 1 eV for polystyrene and yttrium hydride.
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