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Large Solid Angle and High Detection Efficiency Multi-element Silicon Drift Detectors (SDD) for Synchrotron Based X-ray Spectroscopy

机译:基于同步的X射线光谱的大型立体角和高检测效率多元素硅漂移探测器(SDD)

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Third and fourth generation light sources have revolutionized the research in many scientific and technological disciplines. New scientific challenges impose the construction of cutting-edge performance machines and experimental stations. In this context, off-the-shelf detection systems severely constrain the achievable results. These reasons motivated the ReDSoX research project, aiming to explore new solutions related to energy resolving imagers based on Silicon Drift Detectors (SDD), which are among the most employed acquisition devices in X-ray fluorescence spectroscopy. The main goal of the project is to develop novel versatile detection systems able to cover a large photoemission solid angle, being easily adaptable to the needs of different X-ray spectroscopy beamlines and ready to cope with high photon count-rates in order to exploit all the power of new light sources. Research efforts yielded two detector systems, dedicated to different experimental needs. The first system is composed of 32 SDD elements arranged on 4 monolithic sensors and covers a total non-collimated area of 1230 mm~2. Such device is optimized for detecting low-energy photons in the 200 - 4000 eV energy range. The second detector consists of a matrix of 64 SDD elements disposed on 8 monolithic arrays covering an overall non-collimated active area of 576 mm~2 and operating over an energy range between 4 and 30 keV. Both systems are highly integrated and can either be operated as an apparent large area single detector or as a multi-element detector, collecting information separately from each single element in order to enable spatially and angularly resolved advanced studies. The performances of the two detector systems have been studied at the TwinMic and XAFS beamlines (Elettra Sincrotrone Trieste, Italy), respectively. Recent results obtained during these measurements are presented and discussed.
机译:第三代和第四代光源在许多科技学科中彻底改变了研究。新的科学挑战施加了尖端性能机器和实验站的建设。在这种情况下,现成的检测系统严重限制了可实现的结果。这些原因激励了Redsox研究项目,旨在探索基于硅漂移探测器(SDD)的能量分辨成像器相关的新解决方案,这些解决方案是X射线荧光光谱的最常用的采集装置中。该项目的主要目的是开发能够覆盖大型光曝光的新颖的多功能检测系统,很容易适应不同X射线光谱线线的需求,并准备应对高光子计数率以便利用所有新光源的力量。研究工作产生了两种探测器系统,致力于不同的实验需求。第一系统由32个SDD元件组成,布置在4个单片传感器上,覆盖总非准直区域为1230mm〜2。这种装置经过优化,用于检测200 - 4000eV能量范围内的低能量光子。第二检测器由设置在8个整体非准直的有源面积为576mm〜2的整体非准直的有源区域的64个SDD元件的矩阵,并且在4到30kev之间的能量范围内操作。两个系统都是高度集成的,并且可以作为明显的大面积单检测器或作为多元素检测器操作,从每个单个元件分开收集信息,以便在空间和角度地解决高级研究。两种探测器系统的性能分别在Twinmic和XAFS束线(Elettra Sincrotrone,意大利)进行了研究。介绍和讨论了在这些测量期间获得的最近结果。

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