首页> 美国卫生研究院文献>Acta Crystallographica. Section A Foundations and Advances >High-flux ptychographic imaging using the new 55 µm-pixel detector ‘Lambda’ based on the Medipix3 readout chip
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High-flux ptychographic imaging using the new 55 µm-pixel detector ‘Lambda’ based on the Medipix3 readout chip

机译:使用基于Medipix3读出芯片的新型55 µm像素探测器 Lambda进行高通量排印成像

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摘要

Suitable detection systems that are capable of recording high photon count rates with single-photon detection are instrumental for coherent X-ray imaging. The new single-photon-counting pixel detector ‘Lambda’ has been tested in a ptychographic imaging experiment on solar-cell nanowires using Kirkpatrick–Baez-focused 13.8 keV X-rays. Taking advantage of the high count rate of the Lambda and dynamic range expansion by the semi-transparent central stop, a high-dynamic-range diffraction signal covering more than seven orders of magnitude has been recorded, which corresponds to a photon flux density of about 105 photons nm−2 s−1 or a flux of ∼1010 photons s−1 on the sample. By comparison with data taken without the semi-transparent central stop, an increase in resolution by a factor of 3–4 is determined: from about 125 nm to about 38 nm for the nanowire and from about 83 nm to about 21 nm for the illuminating wavefield.
机译:能够通过单光子检测来记录高光子计数率的合适检测系统对于相干X射线成像至关重要。新型单光子计数像素检测器“ Lambda”已经通过使用柯克帕特里克-贝兹聚焦的13.8 keV X射线在太阳能电池纳米线上进行的指纹图谱实验中进行了测试。利用Lambda的高计数率和通过半透明中心光阑进行的动态范围扩展,已记录了覆盖超过七个数量级的高动态范围衍射信号,其对应的光子通量密度约为10 5 光子nm −2 s -1 或通量为〜10 10 光子s - 1 。通过与不使用半透明中心光阑的数据进行比较,可以确定分辨率提高了3-4倍:纳米线从约125 nm增大到约38 nm,照明从约83 nm增大到约21 nm波场。

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