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用于60和80keV电子的Medipix3探测器的特性描述。

Characterisation of the Medipix3 detector for 60 and 80keV electrons.

作者信息

Mir J A, Clough R, MacInnes R, Gough C, Plackett R, Shipsey I, Sawada H, MacLaren I, Ballabriga R, Maneuski D, O'Shea V, McGrouther D, Kirkland A I

机构信息

University of Oxford, Department of Materials, Parks Road, Oxford OX1 3PH, United Kingdom.

University of Glasgow, School of Physics and Astronomy, Glasgow G12 8QQ, United Kingdom.

出版信息

Ultramicroscopy. 2017 Nov;182:44-53. doi: 10.1016/j.ultramic.2017.06.010. Epub 2017 Jun 20.

Abstract

In this paper we report quantitative measurements of the imaging performance for the current generation of hybrid pixel detector, Medipix3, used as a direct electron detector. We have measured the modulation transfer function and detective quantum efficiency at beam energies of 60 and 80keV. In single pixel mode, energy threshold values can be chosen to maximize either the modulation transfer function or the detective quantum efficiency, obtaining values near to, or exceeding those for a theoretical detector with square pixels. The Medipix3 charge summing mode delivers simultaneous, high values of both modulation transfer function and detective quantum efficiency. We have also characterized the detector response to single electron events and describe an empirical model that predicts the detector modulation transfer function and detective quantum efficiency based on energy threshold. Exemplifying our findings we demonstrate the Medipix3 imaging performance recording a fully exposed electron diffraction pattern at 24-bit depth together with images in single pixel and charge summing modes. Our findings highlight that for transmission electron microscopy performed at low energies (energies <100keV) thick hybrid pixel detectors provide an advantageous architecture for direct electron imaging.

摘要

在本文中,我们报告了对用作直接电子探测器的新一代混合像素探测器Medipix3成像性能的定量测量。我们在60keV和80keV的束流能量下测量了调制传递函数和探测量子效率。在单像素模式下,可以选择能量阈值以最大化调制传递函数或探测量子效率,获得接近或超过具有方形像素的理论探测器的值。Medipix3电荷求和模式可同时提供高调制传递函数值和探测量子效率。我们还对探测器对单电子事件的响应进行了表征,并描述了一个基于能量阈值预测探测器调制传递函数和探测量子效率的经验模型。作为我们研究结果的例证,我们展示了Medipix3的成像性能,记录了24位深度的完全曝光电子衍射图案以及单像素和电荷求和模式下的图像。我们的研究结果突出表明,对于在低能量(能量<100keV)下进行的透射电子显微镜,厚混合像素探测器为直接电子成像提供了一种有利的架构。

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