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首页> 外文期刊>Journal of Physics. Condensed Matter >Depth resolved grazing incidence neutron scattering experiments from semi-infinite interfaces: a statistical analysis of the scattering contributions
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Depth resolved grazing incidence neutron scattering experiments from semi-infinite interfaces: a statistical analysis of the scattering contributions

机译:深度分辨的胶凝发生率中子散射中子散射实验从半无限界面:散射贡献的统计分析

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Grazing incidence neutron scattering experiments offer surface sensitivity by reflecting from an interface at momentum transfers close to total external reflection. Under these conditions the penetration depth is strongly non-linear and may change by many orders of magnitude. This fact imposes severe challenges for depth resolved experiments, since the brilliance of neutron beams is relatively low in comparison to e.g. synchrotron radiation. In this article we use probability density functions to calculate the contribution of scattering at different distances from an interface to the intensities registered on the detector. Our method has the particular advantage that the depth sensitivity is directly extracted from the scattering pattern itself. Hence for perfectly known samples exact resolution functions can be calculated and visa versa. We show that any tails in the resolution function, e.g. Gaussian shaped, hinders depth resolved experiments. More importantly we provide means for a descriptive statistical analysis of detector images with respect to the scattering contributions and show that even for perfect resolution near surface scattering is hardly accessible.
机译:放牧入射中子散射实验通过从靠近全部外反射的动量转移到界面的界面反射,提供表面敏感性。在这些条件下,穿透深度是强烈的非线性的,并且可以通过许多数量级变化。这一事实对深度解决实验施加了严重的挑战,因为与例如,中子束的亮度相对较低。同步辐射。在本文中,我们使用概率密度函数来计算与在检测器上登记的界面的不同距离处的不同距离散射的贡献。我们的方法具有特别优点,即深度灵敏度直接从散射模式本身提取。因此,对于完美的已知样本,可以计算精确的分辨率函数,并签证。我们展示了分辨率中的任何尾部,例如,高斯形状,阻碍深度解决实验。更重要的是,我们提供了对散射贡献对探测器图像的描述性统计分析的手段,并且表明即使对于近表面散射附近的完美分辨率也很难接近。

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