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Towards a microchannel-based X-ray detector with two-dimensional spatial and time resolution and high dynamic range

机译:迈向具有二维空间和时间分辨率以及高动态范围的基于微通道的X射线探测器

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摘要

X-ray detectors that combine two-dimensional spatial resolution with a high time resolution are needed in numerous applications of synchrotron radiation. Most detectors with this combination of capabilities are based on semiconductor technology and are therefore limited in size. Furthermore, the time resolution is often realised through rapid time-gating of the acquisition, followed by a slower readout. Here, a detector technology is realised based on relatively inexpensive microchannel plates that uses GHz waveform sampling for a millimeter-scale spatial resolution and better than 100 ps time resolution. The technology is capable of continuous streaming of time- and location-tagged events at rates greater than 10(7) events per cm(2). Time-gating can be used for improved dynamic range.
机译:在同步加速器辐射的众多应用中,需要将二维空间分辨率与高时间分辨率结合在一起的X射线探测器。具有这种功能组合的大多数检测器都是基于半导体技术的,因此尺寸受到限制。此外,时间分辨率通常是通过快速的时间门控采集,然后是较慢的读数来实现的。在此,基于相对便宜的微通道板实现了检测器技术,该微通道板使用GHz波形采样获得毫米级的空间分辨率并具有优于100 ps的时间分辨率。该技术能够以每cm(2)大于10(7)个事件的速率连续流式传输带有时间和位置标记的事件。时间选通可用于改善动态范围。

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