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A model of high resolution cross strip readout for photon and ion counting imaging detectors

机译:用于光子和离子计数成像探测器的高分辨率交叉带读出模型

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Recent advances in the photon counting, imaging readout for microchannel plate (MCP) detectors has led to a substantial improvement in their spatial resolution. The spatial accuracy (/spl sim/7--10 /spl mu/m) of an MCP detector with a cross strip (XS) readout has been shown to be limited by the MCP pore size (<10 /spl mu/m). In this paper, we study the ultimate resolution limits of the XS readout itself. The model allows us to determine the requirements on the anode's geometry and the signal processing electronics in order to reach a particular spatial resolution. The optimal detector parameters, such as the width of the charge footprint at the anode (determined by the distance and the field between the MCP and the anode), and the gain of the detector can also be found with the help of our model. The model indicates that the optimum full-width at half-maximum of the charge footprint distribution at the anode is a factor of /spl sim/1.6 larger than the anode period. Given a noise of charge sensitive amplifiers of 350 electrons rms each we predict that the MCP gain can be as low as 2.5/spl times/10/sup 5/ for this detector to resolve /spl sim/7 /spl mu/m features. Results of our modeling also indicate that the accuracy of the position obtained for center of gravity centroiding of the charge distribution is inferior to fitting a Gaussian-like analytical function, providing the geometry of the anode is accurate enough. The model predictions are compared with the experimentally measured images and reveal the critical parameters (anode's geometric accuracy and amplifier noise), which can be improved in future detectors.
机译:用于微通道板(MCP)检测器的光子计数,成像读出的最新进展已导致其空间分辨率的显着提高。带有交叉(XS)读数的MCP检测器的空间精度(/ spl sim / 7--10 / spl mu / m)已显示受MCP孔径(<10 / spl mu / m)的限制。在本文中,我们研究了XS读数本身的极限分辨率极限。该模型使我们能够确定对阳极几何形状和信号处理电子设备的要求,以达到特定的空间分辨率。最佳检测器参数,例如阳极处的电荷足迹宽度(由MCP与阳极之间的距离和电场确定)以及检测器的增益也可以借助我们的模型找到。该模型表明,阳极处的电荷足迹分布的一半处的最佳全宽比阳极周期大/ spl sim / 1.6。给定每个电荷敏感放大器的噪声为350电子均方根,我们预测该检测器解析/ spl sim / 7 / spl mu / m特性的MCP增益可低至2.5 / spl次/ 10 / sup 5 /。我们的建模结果还表明,只要阳极的几何形状足够精确,电荷分布的重心重心获得的位置精度就不如拟合高斯分析函数。将模型预测值与实验测量的图像进行比较,并揭示了关键参数(阳极的几何精度和放大器噪声),可以在将来的探测器中对其进行改进。

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