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2D detectors for particle physics and for imaging applications

机译:用于粒子物理和成像应用的2D检测器

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摘要

The demands on detectors for particle detection as well as for medical and astronomical X-ray imaging are continuously pushing the development of novel pixel detectors. The state of the art in pixel detector technology to date are hybrid pixel detectors in which sensor and read-out integrated circuits are processed on different substrates and connected via high density interconnect structures. While these detectors are technologically mastered such that large scale particle detectors can be and are being built, the demands for improved performance for the next generation particle detectors ask for the development of monolithic or semi-monolithic approaches. Given the fact that the demands for medical imaging are different in some key aspects, developments for these applications, which started as particle physics spin-off, are becoming rather independent. New approaches are leading to novel signal processing concepts and interconnect technologies to satisfy the need for very high dynamic range and large area detectors. The present state in hybrid and (semi-)monolithic pixel detector development and their different approaches for particle physics and imaging application is reviewed. (c) 2005 Elsevier B.V. All rights reserved.
机译:对用于粒子检测以及医学和天文X射线成像的检测器的需求不断推动着新型像素检测器的发展。迄今为止,像素检测器技术中的技术水平是混合像素检测器,其中传感器和读出集成电路在不同的基板上进行处理,并通过高密度互连结构连接。尽管这些检测器在技术上已经掌握,可以建造并且正在建造大型粒子检测器,但对下一代粒子检测器性能提高的要求要求开发整体式或半整体式方法。鉴于医学成像的需求在某些关键方面有所不同,这些应用的发展(从粒子物理学的衍生出来)开始变得相当独立。新方法导致了新颖的信号处理概念和互连技术,以满足对非常高的动态范围和大面积检测器的需求。综述了混合和(半)整体式像素检测器发展的现状及其在粒子物理和成像应用中的不同方法。 (c)2005 Elsevier B.V.保留所有权利。

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