首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Study of sub-pixel position resolution with time-correlated transient signals in 3D pixelated CdZnTe detectors with varying pixel sizes
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Study of sub-pixel position resolution with time-correlated transient signals in 3D pixelated CdZnTe detectors with varying pixel sizes

机译:在具有可变像素尺寸的3D像素化CdZnTe检测器中研究具有时间相关瞬态信号的亚像素位置分辨率

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We evaluated the sub-pixel position resolution achievable in large-volume CdZnTe pixelated detectors with conventional pixel patterns and for several different pixel sizes: 2.8 mm, 1.72 mm, 1.4 mm and 0.8 mm. Achieving position resolution below the physical dimensions of pixels (sub-pixel resolution) is a practical path for making high-granularity position-sensitive detectors, <100μm, using a limited number of pixels dictated by the mechanical constraints and multi-channel readout electronics. High position sensitivity is important for improving the imaging capability of CZT gamma cameras. It also allows for making more accurate corrections of response non-uniformities caused by crystal defects, thus enabling use of standard-grade (unselected) and less expensive CZT crystals for producing large-volume position-sensitive CZT detectors feasible for many practical applications. We analyzed the digitized charge signals from a representative 9 pixels and the cathode, generated using a pulsed-laser light beam focused down to 10μm (650 nm) to scan over a selected3×3pixel area. We applied our digital pulse processing technique to the time-correlated signals captured from adjacent pixels to achieve and evaluate the capability for sub-pixel position resolution. As an example, we also demonstrated an application of 3D corrections to improve the energy resolution and positional information of the events for the tested detectors.
机译:我们评估了具有常规像素图案的大体积CdZnTe像素化探测器在2.8mm,1.72mm,1.4mm和0.8mm几种不同像素尺寸下可获得的亚像素位置分辨率。实现低于像素物理尺寸的位置分辨率(子像素分辨率)是使用有限的像素(由机械约束和多通道读出电子设备决定)来制造小于100μm的高粒度位置敏感探测器的实用途径。高位置灵敏度对于提高CZT伽马相机的成像能力很重要。它还允许对由晶体缺陷引起的响应不均匀性进行更准确的校正,从而可以使用标准级(未选择)和价格较低的CZT晶体来生产大体积的位置敏感CZT检测器,该检测器对于许多实际应用都是可行的。我们分析了具有代表性的9个像素和阴极的数字化电荷信号,这些信号是使用聚焦至10μm(650 nm)的脉冲激光光束在选定的3×3像素区域进行扫描而生成的。我们将数字脉冲处理技术应用于从相邻像素捕获的时间相关信号,以实现并评估子像素位置分辨率的能力。作为示例,我们还演示了3D校正在改善被测探测器的能量分辨率和事件位置信息方面的应用。

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