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Systematic study on the performance of elliptic focusing neutron guides

机译:椭圆聚焦中子导管性能的系统研究

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In neutron scattering experiments there is an increasing trend towards the study of smaller volume samples, which make the use of focusing optics more important. Focusing guide geometries based on conic-sections, such as those with parabolic and elliptic shapes, have been extensively used in both recently built neutron instruments and upgrades of existing hardware. A large fraction of proposed instruments at the European Spallation Source feature the requirement of good performance when measuring on small samples. The optimised design of a focusing system comes after time consuming Monte-Carlo (MC) simulations. Therefore, in order to help reduce the time needed to design such focusing systems, it is necessary to study systematically the performance of focusing guides. In the present work, we perform a theoretical analysis of the focusing properties of neutron beams, and validate them using a combination of Monte-Carlo simulations and Particle Swarm Optimisations (PSOs), where there is a close correspondence between the maximum divergence of the beam and the shape of the guide. The analytical results show that two limits can be considered, which bound a range of conic section shapes that provide optimum performance. Finally, we analyse a more realistic guide example and we give an assessment of the importance of the contribution from multiple reflections in different systems.
机译:在中子散射实验中,研究体积较小的样品的趋势越来越大,这使聚焦光学的使用变得更加重要。基于圆锥形截面的聚焦导向几何形状,例如具有抛物线形和椭圆形形状的聚焦几何形状,已广泛用于最近建造的中子仪器和现有硬件的升级中。欧洲散裂源中提出的大部分仪器都要求对小样本进行测量时具有良好性能。经过费时的蒙特卡洛(MC)仿真之后,聚焦系统的优化设计得以实现。因此,为了帮助减少设计此类聚焦系统所需的时间,有必要系统地研究聚焦导轨的性能。在当前工作中,我们对中子束的聚焦特性进行了理论分析,并使用蒙特卡洛模拟和粒子群优化(PSO)的组合对其进行了验证,其中束的最大发散度之间存在密切的对应关系和指南的形状。分析结果表明,可以考虑两个限制,它们限制了提供最佳性能的圆锥截面形状的范围。最后,我们分析了一个更现实的指导示例,并对不同系统中多次反射的贡献的重要性进行了评估。

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