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Sub-pixel correlation length neutron imaging: Spatially resolved scattering information of microstructures on a macroscopic scale

机译:亚像素相关长度中子成像:宏观尺度上微观结构的空间分辨散射信息

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摘要

Neutron imaging and scattering give data of significantly different nature and traditional methods leave a gap of accessible structure sizes at around 10 micrometers. Only in recent years overlap in the probed size ranges could be achieved by independent application of high resolution scattering and imaging methods, however without providing full structural information when microstructures vary on a macroscopic scale. In this study we show how quantitative neutron dark-field imaging with a novel experimental approach provides both sub-pixel resolution with respect to microscopic correlation lengths and imaging of macroscopic variations of the microstructure. Thus it provides combined information on multiple length scales. A dispersion of micrometer sized polystyrene colloids was chosen as a model system to study gravity induced crystallisation of microspheres on a macro scale, including the identification of ordered as well as unordered phases. Our results pave the way to study heterogeneous systems locally in a previously impossible manner.
机译:中子成像和散射提供的数据性质大不相同,传统方法在约10微米处留下了可访问的结构尺寸差距。仅在最近几年,通过独立应用高分辨率散射和成像方法才能实现探测尺寸范围的重叠,但是当微观结构在宏观尺度上变化时,却无法提供完整的结构信息。在这项研究中,我们展示了采用新颖的实验方法进行定量中子暗场成像,既可以提供有关微观相关长度的子像素分辨率,又可以提供微观结构的宏观变化的成像。因此,它提供了多个长度范围的组合信息。选择微米级聚苯乙烯胶体的分散体作为模型系统,以研究重力诱导的微球在大尺度上的结晶,包括识别有序和无序相。我们的结果为以以前不可能的方式在本地研究异构系统铺平了道路。

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