首页> 外文期刊>Journal of synchrotron radiation >Characterization of a quadrant diamond transmission X-ray detector including a precise determination of the mean electron-hole pair creation energy
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Characterization of a quadrant diamond transmission X-ray detector including a precise determination of the mean electron-hole pair creation energy

机译:象限菱形X射线检测器的表征,包括精确地确定平均电子 - 孔对产生能量

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Precise monitoring of the incoming photon flux is crucial for many experiments using synchrotron radiation. For photon energies above a few keV, thin semiconductor photodiodes can be operated in transmission for this purpose. Diamond is a particularly attractive material as a result of its low absorption. The responsivity of a state-of-the art diamond quadrant transmission detector has been determined, with relative uncertainties below 1% by direct calibration against an electrical substitution radiometer. From these data and the measured transmittance, the thickness of the involved layers as well as the mean electron- hole pair creation energy were determined, the latter with an unprecedented relative uncertainty of 1%. The linearity and X-ray scattering properties of the device are also described.
机译:精确监测进入的光子通量对于使用同步辐射的许多实验至关重要。 对于少量KEV以上的光子能量,为此目的,可以在变速器中操作薄的半导体光电二极管。 由于其较低的吸收,金刚石是一种特别有吸引力的材料。 已经确定了最先进的金刚石象限传输检测器的响应度,通过直接校准电置辐射计,相对不确定性低于1%。 根据这些数据和测量的透射率,确定所涉及的层的厚度以及平均电子 - 对对产生能量,后者具有前所未有的相对不确定度为1%。 还描述了该装置的线性和X射线散射特性。

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