STXM成像与配置检测器

G. Morrison, W. Eaton, R. Barrett, P. Charalambous
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引用次数: 29

摘要

在扫描透射x射线显微镜(STXM)中使用分段,透射x射线检测器允许同时实现许多不同的图像模式,从单个标本扫描。一种基于80x80元CCD阵列的软件可配置探测器系统已经在ESRF的ID21上使用STXM进行了测试。整个CCD子系统由运行在PC机上的软件控制,该软件处理图像数据采集与STXM光栅扫描的同步,并将实时图像信号返回到STXM控制系统,同时将一组三维图像数据本地存储在探测器控制PC机上。读出电子器件允许在不到10ms的时间内记录STXM图像中的每个像素的完整CCD帧,因此与使用单元件检测器的STXM成像相比,收集如此大量的图像数据没有明显的时间损失。后续处理允许合成任何适当的图像信号,并且用户可以快速呈现吸收,相衬和暗场图像,所有这些都是完美配准的,以促进样品结构的快速定量解释。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
STXM imaging with a configured detector
The use of a segmented, transmitted-x-ray detector in the scanning transmission x-ray microscope (STXM) allows a number of different image modes to be realised simultaneously, from a single scan of the specimen. A software-configurable detector system that is based on an 80x80-element CCD array has been tested using the STXM on ID21 at the ESRF. The whole CCD sub-system is controlled by software running on a PC, which handles the synchronisation of image data collection with the raster scan of the STXM, and returns a real-time image signal to the STXM control system, while storing a 3-D set of image data locally on the detector control PC. The readout electronics allow full CCD frames to be recorded in under 10ms for each pixel in the STXM image, so there is no significant time penalty associated with the collection of such a large volume of image data, when compared to STXM imaging with a single-element detector. Subsequent processing allows any appropriate image signals to be synthesised, and the user can quickly be presented with absorption, phase contrast, and darkfield images, all in perfect registration, to facilitate a rapid quantitative interpretation of the sample structure.
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