论文标题

基于分析仪的X射线相对比成像技术的固有空间分辨率极限

Intrinsic Spatial Resolution Limit in Analyzer-Based X-Ray Phase Contrast Imaging Technique

论文作者

Honnicke, Marcelo G., Morelhao, Sergio L.

论文摘要

当使用完美的单晶时,动态衍射效应总是起作用。 X射线在衍射(灭绝深度,$ 1/σ_e$)中对表面正常的渗透在完美的单晶中没有恒定值。在晶体衍射条件下的不同角位置的值变化。对于较高的X射线能,在衍射条件的小角度范围内,对于每个不同晶体角位置,该值可能会从几微米变为数十毫米。这种效果可能会在对象(样品)中作为图像检测器中的一条线扩散一个点,尤其是在较低的衍射角位置设置了晶体(或样品角度偏斜)的情况下,其中X射线渗透的表面成分可以实现巨大的值。然后,对于发生动态衍射的成像实验,这种内在特性会影响图像分辨率。我们已经使用基于分析仪的X射线相比成像设置(ABI)在两个不同的X射线能量上建模并实验检查了这种动力学衍射属性:10.7 keV和18 keV。结果表明,我们的理论模型与测量结果一致。对于更高的能量,模糊效应得到了增强,并本质上限制了图像空间分辨率。

Dynamical diffraction effects always play a role when working with perfect single crystals. The penetration of X-rays respect to the surface normal during diffraction (extinction depth, $1/σ_e$) in perfect single crystals does not have a constant value. The value changes for different angular positions on the crystal diffraction condition. For higher X-ray energies this value can change from few micrometers to tens of millimeters for each different crystal angular position in the small angular range of the diffraction condition. This effect may spread a single point in the object (sample) as a line in the image detector, especially if the crystal is set (or if the sample angularly deviates the beam) at lower diffraction angle positions, where the surface component of X-ray penetration can achieve huge values. Then, for imaging experiments where the dynamical diffraction occurs, such intrinsic property can affect the image resolution. We have modeled and experimentally checked such a dynamical diffraction property using, as example, an Analyzer-based X-ray phase contrast imaging setup (ABI) at two different X-ray energies: 10.7 keV and 18 keV. The results show that our theoretical model is consistent with the measured results. For higher energies the blur effect is enhanced and intrinsically limits the image spatial resolution.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源