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Diffraction of real and virtual photons in a pyrolytic graphite crystal as source of intensive quasimonochromatic X-ray beam

机译:作为强准准X射线束源的热解石墨晶体中真实和虚拟光子的衍射

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A series of experiments on the parametric X-rays radiation (PXR) generation and radiation soft component diffraction of relativistic electrons in pyrolytic graphite (PG) crystals have been carried out at the Tomsk synchrotron. It is shown that the experimental results with PG crystals are explained by the kinematic PXR theory if we take into account a contribution of the real photons diffraction (transition radiation, bremsstrahlung and PXR photons as well). The measurements of the emission spectrum of channeled electrons in the photon energy range much smaller than the characteristic energy of channeling radiation have been performed with a crystal-diffraction spectrometer. For electrons incident along the <110> axis of a silicon crystal, the radiation intensity in the energy range 30≤ ω≤360 keV exceeds the bremsstrahlung one almost by an order of magnitude. Different possibilities to create an effective source of the monochromatic X-ray beam based on the real and virtual photons diffraction in the PG crystals have been considered.
机译:在托木斯克同步加速器上已进行了一系列的参数X射线辐射(PXR)生成和热解石墨(PG)晶体中相对论电子的辐射软组分衍射的实验。结果表明,如果我们考虑到实际光子衍射的影响(也包括过渡辐射,致辐射和PXR光子),那么PG晶体的实验结果可以通过运动学PXR理论来解释。已经用晶体衍射光谱仪对光子能量范围内的沟道电子的发射光谱进行了测量,该光子能量范围比沟道辐射的特征能量小得多。对于沿硅晶体<110>轴入射的电子,能量范围30≤ω≤360keV的辐射强度几乎比the致辐射强度高一个数量级。已经考虑了基于PG晶体中的真实和虚拟光子衍射来创建单色X射线束的有效源的不同可能性。

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