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High-brightness, compact soft x-ray source based on Cherenkov radiation

机译:基于Cherenkov辐射的高亮度,紧凑型软X射线源

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Cherenkov radiation in the soft x-ray region is generated in narrowband regions at inner-shell absorption edges. Mainly low-Z elements are suitable Cherenkov sources, which emit in a photon energy range from 30 eV to 1 keV and require moderate electron energies up to 25 MeV. Generally, in the soft x-ray region materials are highly absorbing and therefore the Cherenkov radiation theory is discussed for absorbing media. A detailed description includes transition radiation that is generated at the interface when the relativistic electron exits the material. We show that the transition radiation yield equation, when it is adopted for an absorbing medium, includes Cherenkov radiation. Based on this approach it is shown that the spectral intensity of Cherenkov radiation in the soft x-ray region is large compared to transition radiation for moderate electron energies. First measurements of soft x-ray Cherenkov radiation in the water-window spectral region, generated in titanium and vanadium foils, are discussed in detail. The measured spectral and angular distribution of the radiation, and the measured total yield (≈10~(-4) photon per electron) are in agreement with theoretical predictions based on the refractive index data. We show that the brightness that can be achieved using a small electron accelerator is sufficient for practical x-ray microscopy in the water window.
机译:在软X射线区域的Cherenkov辐射在内壳吸收边缘的窄带区域中产生。低Z元素主要是合适的Cherenkov源,其发射的光子能量范围为30 eV至1 keV,并且需要中等的电子能量,最高可达25 MeV。通常,在软X射线区域中,材料具有很高的吸收能力,因此讨论了Cherenkov辐射理论来吸收介质。详细描述包括当相对论电子离开材料时在界面处产生的过渡辐射。我们表明,当过渡辐射屈服方程用于吸收介质时,它包括Cherenkov辐射。基于此方法,表明与中等电子能量的跃迁辐射相比,软X射线区域中的Cherenkov辐射的光谱强度大。详细讨论了钛和钒箔中水窗口光谱区域中软X射线Cherenkov辐射的首次测量。测得的辐射光谱和角度分布以及测得的总产率(每个电子≈10〜(-4)光子)与基于折射率数据的理论预测相符。我们表明,使用小型电子加速器可以获得的亮度足以用于水窗中的实际X射线显微镜检查。

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