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Coherence in X-ray physics

机译:X射线物理学中的相干性

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摘要

Highly brilliant synchrotron radiation sources have opened up the possibility of using coherent X-rays in spectroscopy and imaging. Coherent X-rays are characterized by a large lateral coherence length. Speckle spectroscopy is extended to hard X-rays, improving the resolution to the nm range. It has become possible to image opaque objects in phase contrast with a sensitivity far superior to imaging in absorption contrast. All the currently available X-ray sources are chaotic sources. Their characterization in terms of coherence functions of the first and second order is introduced. The concept of coherence volume, defined in quantum optics terms, is generalized for scattering experiments. When the illuminated sample volume is smaller than the coherence volume, the individuality of the defect arrangement in a sample shows up as speckle in the scattered intensity. Otherwise, a configurational average washes out the speckle and only diffuse scattering and possibly Bragg reflections will survive. The loss of interference due to the finite detection time, to the finite detector pixel size and to uncontrolled degrees of freedom in the sample is discussed at length. A comparison between X-ray scattering, neutron scattering and mesoscopic electron transport is given. A few examples illustrate the possibilities of coherent X-rays for imaging and intensity correlation spectroscopy.
机译:高度明亮的同步加速器辐射源为在光谱学和成像中使用相干X射线开辟了可能性。相干X射线的特点是横向相干长度大。散斑光谱扩展到硬X射线,将分辨率提高到nm范围。以相衬方式对不透明物体进行成像,其灵敏度远远优于吸收相衬方式。当前所有可用的X射线源都是混沌源。介绍了它们在一阶和二阶相干函数方面的表征。相干体积的概念(用量子光学术语定义)被推广用于散射实验。当被照射的样品体积小于相干体积时,样品中缺陷排列的个体表现为散射强度中的斑点。否则,构型平均会冲走斑点,只有弥散散射和可能的布拉格反射才能幸免。详细讨论了由于有限的检测时间,有限的检测器像素大小和不受控制的自由度导致的干扰损失。给出了X射线散射,中子散射和介观电子传输之间的比较。一些示例说明了相干X射线用于成像和强度相关光谱的可能性。

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  • 来源
    《Naturwissenschaften》 |2001年第6期|249-260|共12页
  • 作者

    B. Lengeler;

  • 作者单位

    II. Physikalisches Institut B RWTH Aachen 52056 Aachen Germany;

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  • 原文格式 PDF
  • 正文语种 eng
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