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Investigation of spatial resolution and temporal performance of SAPHIRE (scintillator avalanche photoconductor with high resolution emitter readout) with integrated electrostatic focusing

机译:具有集成静电聚焦的SAPHIRE(具有高分辨率发射极读数的闪烁体雪崩光电导体)的空间分辨率和时间性能的研究

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We have previously proposed SAPHIRE (scintillator avalanche photoconductor with high resolution emitter readout), a novel detector concept with potentially superior spatial resolution and low-dose performance compared with existing flat-panel imagers. The detector comprises a scintillator that is optically coupled to an amorphous selenium photoconductor operated with avalanche gain, known as high-gain avalanche rushing photoconductor (HARP). High resolution electron beam readout is achieved using a field emitter array (FEA). This combination of avalanche gain, allowing for very low-dose imaging, and electron emitter readout, providing high spatial resolution, offers potentially superior image quality compared with existing flat-panel imagers, with specific applications to fluoroscopy and breast imaging. Through the present collaboration, a prototype HARP sensor with integrated electrostatic focusing and nano-Spindt FEA readout technology has been fabricated. The integrated electron-optic focusing approach is more suitable for fabricating large-area detectors. We investigate the dependence of spatial resolution on sensor structure and operating conditions, and compare the performance of electrostatic focusing with previous technologies. Our results show a clear dependence of spatial resolution on electrostatic focusing potential, with performance approaching that of the previous design with external mesh-electrode. Further, temporal performance (lag) of the detector is evaluated and the results show that the integrated electrostatic focusing design exhibits comparable or better performance compared with the mesh-electrode design. This study represents the first technical evaluation and characterization of the SAPHIRE concept with integrated electrostatic focusing.
机译:我们以前曾提出过SAPHIRE(具有高分辨率发射器读数的闪烁体雪崩光电导体),这是一种新颖的探测器概念,与现有的平板成像仪相比,具有潜在的优越的空间分辨率和低剂量性能。该检测器包括闪烁体,该闪烁体光学耦合至以雪崩增益工作的非晶硒光电导体,该硒光电导体被称为高增益雪崩冲积光电导体(HARP)。使用场发射器阵列(FEA)可以实现高分辨率的电子束读出。与现有的平板成像仪相比,雪崩增益(允许非常低剂量的成像)和电子发射器读数(提供高空间分辨率)的结合提供了潜在的优越图像质量,尤其是在荧光检查和乳房成像方面。通过目前的合作,已制造出具有集成静电聚焦和纳米Spindt FEA读取技术的HARP原型传感器。集成的电子光学聚焦方法更适合于制造大面积检测器。我们研究了空间分辨率对传感器结构和工作条件的依赖性,并将静电聚焦的性能与以前的技术进行了比较。我们的结果表明,空间分辨率对静电聚焦电势有明显的依赖性,其性能接近外部网状电极以前的设计。此外,对检测器的时间性能(滞后)进行了评估,结果表明,与网状电极设计相比,集成式静电聚焦设计具有可比或更好的性能。这项研究代表了具有集成静电聚焦功能的SAPHIRE概念的首次技术评估和表征。

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