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首页> 外文期刊>Radiation Protection Dosimetry >A PIXEL DETECTOR-BASED SINGLE PHOTON-COUNTING SYSTEM AS FAST SPECTROMETER FOR DIAGNOSTIC X-RAY BEAMS
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A PIXEL DETECTOR-BASED SINGLE PHOTON-COUNTING SYSTEM AS FAST SPECTROMETER FOR DIAGNOSTIC X-RAY BEAMS

机译:基于像素检测器的单光子计数系统,用于诊断X射线束的快速光谱仪

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Recent advances in semiconductor pixel detectors and read-out electronics allowed to build the first prototypes of single photon-counting imaging systems that represent the last frontier of digital radiography. Among the advantages with respect to commercially available digital imaging systems, there are direct conversion of photon energy into electrical charge and the effective rejection of electronic noise by means of a thresholding process. These features allow the photon-counting systems to achieve high imaging performances in terms of spatial and contrast resolution. Moreover, the now available deep integration techniques allow the reduction of the pixel size and the improvement of the functionality of the single cell and the read-out speed so as to cope with the high fluxes found in diagnostic radiology. In particular, the single photon-counting system presented in this paper is based on a .100-μm thick silicon pixel detector bump-bonded to the Medipix2 read-out chip to form an assembly of 256 × 256 square pixels at a pitch of 55 μm. Each cell comprises a low-noise preamplifier, two pulse height discriminators and a 14-bit counter. The maximum counting rate per pixel is 1 MHz. The chip can operate in two modalities: it records the events with energy above a threshold (single mode) or between two energy thresholds (window mode). Exploiting this latter feature, a possible application of such a system as a fast spectrometer is presented to study the energy spectrum of diagnostic beams produced by X-ray tubes.
机译:半导体像素检测器和读出电子设备的最新进展允许构建代表数字射线照相的最新领域的单光子计数成像系统的第一批原型。在相对于可商购的数字成像系统而言的优点中,存在光子能量直接转换为电荷以及借助于阈值处理有效地抑制电子噪声的优点。这些功能使光子计数系统可以在空间和对比度分辨率方面实现高成像性能。而且,现在可用的深度集成技术允许减小像素尺寸,并改善单个单元的功能和读取速度,以应对诊断放射学中发现的高通量。尤其是,本文介绍的单光子计数系统基于一个凸点结合到Medipix2读出芯片上的.100μm厚的硅像素检测器,以55的间距形成256×256平方像素的组件微米每个单元包括一个低噪声前置放大器,两个脉冲高度鉴别器和一个14位计数器。每个像素的最大计数率为1 MHz。该芯片可以两种模式运行:它记录能量高于阈值的事件(单模式)或两个能量阈值之间的事件(窗口模式)。利用后一特征,提出了诸如快速光谱仪之类的系统的可能应用,以研究由X射线管产生的诊断束的能谱。

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