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Position sensing in a cylindrical ionization detector with a resistive cathode

机译:带有电阻阴极的圆柱形电离检测器中的位置感应

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摘要

Position sensing in cylindrical ionization detectors is essential for imaging applications and can be used to improve energy resolution. We propose a readout design that incorporates a resistive cathode and external pickup electrodes. Signals induced in each electrode are used to predict the radial and azimuthal coordinates of interaction vertices. A prototype detector, 25.4mm in diameter, made of quartz fiber composite and containing xenon at 10 atm, was built to test the proposed readout design. Data collected using an ~(241)Am alpha source show a spatial resolution of 1.9mm (FWHM). In addition, Monte Carlo simulations of gamma interactions over a range of energies, predict values that are in good agreement with the experiment. Using the position data to remove the geometrical dependence, energy resolution at 140 and 511 key is predicted to be 8.2% and 2.3% FWHM, respectively (ENC of 60 electfons). These values represent a significant improvement over conventional crystal detectors, such as NaI. The proposed technique can be applied in a large volume position sensitive detector.
机译:圆柱电离检测器中的位置感测对于成像应用至关重要,可用于提高能量分辨率。我们提出了一种包含电阻阴极和外部拾波电极的读出设计。在每个电极中感应的信号用于预测相互作用顶点的径向和方位坐标。建造了一个直径为25.4mm的原型探测器,该探测器由石英纤维复合材料制成,并在10个大气压下包含氙气,以测试建议的读数设计。使用〜(241)Am alpha来源收集的数据显示的空间分辨率为1.9mm(FWHM)。此外,在各种能量范围内的伽马相互作用的蒙特卡洛模拟预测的值与实验非常吻合。使用位置数据消除几何相关性,预测140和511键的能量分辨率分别为FWHM的8.2%和2.3%(ENC为60电子)。这些值表示相对于常规晶体检测器(如NaI)的重大改进。所提出的技术可以应用于大体积的位置敏感检测器中。

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