Evaluation of the radiation hardness and Charge Summing Mode of a Medipix3-based detector with synchrotron radiation

E. Gimenez, R. Ballabriga, M. Campbell, I. Dolbnya, I. Horswell, X. Llopart, J. Marchal, K. Sawhney, N. Tartoni, D. Turecek
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引用次数: 2

Abstract

Synchrotron applications such as coherent X-ray diffraction and X-ray photon-correlation spectroscopy require detectors with a pixel pitch of 50 μm as highlighted by a survey with beamline scientists of Diamond Light Source synchrotron. Furthermore, the detector should also have a high frame rate, large dynamic range and large detection efficiency. The Medipix3 readout chip with a pixel pitch of 55 μm emerged as a good candidate to develop a new detector for the aforementioned applications. Additionally, it implements a new operating mode, referred to as Charge Summing Mode (CSM), with the purpose of eliminating charge-shared events. This mode can be very useful in this case, since the charge-sharing effect increases as the detector pixel size decreases. Also, its design is expected to be more radiation hard that its predecessor Medipix2. The present work focuses on the evaluation of the radiation hardness and the CSM operating mode of a Medipix3-based detector in order to develop a large area detector for synchrotron applications.
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基于medipix3的同步辐射探测器的辐射硬度和电荷求和模式评价
同步加速器的应用,如相干x射线衍射和x射线光子相关光谱,需要探测器的像素间距为50 μm,金刚石光源同步加速器的光束线科学家的调查突出了这一点。此外,检测器还应具有高帧率、大动态范围和高检测效率。像素间距为55 μm的Medipix3读出芯片成为开发上述应用的新检测器的良好候选者。此外,它还实现了一种新的操作模式,称为电荷求和模式(CSM),目的是消除电荷共享事件。这种模式在这种情况下非常有用,因为电荷共享效应随着探测器像素大小的减小而增加。此外,它的设计预计将比其前身Medipix2更具抗辐射能力。本文对基于medipix3的探测器的辐射硬度和CSM工作模式进行了评估,以期开发出用于同步加速器的大面积探测器。
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