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Development of a focusing mirror for SANS

机译:开发用于SANS的聚焦镜

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Abstract: A 2.4 meter long, doubly curved, grazing incidence mirror is being developed for a 30 meter high resolution small angle neutron scattering (SANS) instrument now in operation at NIST's Cold Neutron Research Facility. A focussing mirror can in principle yield a higher flux at the sample for a given angular resolution than the pinhole collimation normally used in SANS instruments, provided that a sufficiently sharp focus can be achieved. The mirror is being constructed from 8, 30 cm long, concave cylindrical quartz segments that have surfaces with a mean roughness, $alpha$-s$/, ranging from 0.3 to 0.9 nm. The mirror segments will be aligned along an arc and bent slightly to approximate an overall toroidal shape. The results of design calculations for the mirror system; of neutron reflectivity measurements of the specular and nonspecular scattering from the individual mirror segments and from test pieces with nickel coatings; and tests of the mirror bender are described. From these results, the overall gain in flux that can be realistically expected from the completed mirror system is estimated.!8
机译:摘要:正在为NIST的冷中子研究设施中正在运行的30米高分辨率小角中子散射(SANS)仪器开发一个2.4米长,双曲面掠入射镜。对于给定的角度分辨率,聚焦镜原则上可以比SANS仪器中通常使用的针孔准直仪产生更高的通量,前提是可以实现足够清晰的聚焦。该反射镜由8个30厘米长的凹形圆柱形石英段构成,这些石英段的表面平均粗糙度在0.3到0.9 nm之间。镜段将沿着弧线对齐并稍微弯曲以近似整体环形形状。镜子系统的设计计算结果;测量各个反射镜段和镀镍试件的镜面和非镜面散射的中子反射率;描述了镜面弯曲器的测试。根据这些结果,可以估算出可以从完整的反射镜系统实际预期得到的总通量增益!8

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