论文标题
粉刺靶向数十个γ射线成像时间分辨率的设计研究:Clearmind探测器
Design study of a scintronic crystal targeting tens of picoseconds time resolution for gamma ray imaging: the ClearMind detector
论文作者
论文摘要
我们描述了针对25 ps fwhm的时间分辨率的新伽马射线螺丝检测器的概念,并具有毫米的体积重建和高检测效率。它的设计由一个单层的大型PBWO4闪烁晶体组成,其有效的光电阴极直接沉积在其上。由于光电阴极的折射率高于晶体,因此该设计否定了光学光子在晶体/光探测器光学界面上的总反射效应,因此很大程度上改善了晶体和光电轨道之间的光学耦合。这允许有效地检测PBWO4中511 KEV光电转换产生的Cherenkov光,并优化检测器时间分辨率。此外,PBWO4额外产生的低收益,快速闪烁光可将检测到的光子统计数据提高到一个因子10,从而促进了晶体内伽马射线相互作用的准确(3维)定位,并提供了沉积能量的公平测量。本文列出了必须克服的技术挑战才能建立该scintronic检测器。我们表明,现在已经证明了所有关键技术,并呈现了初步的蒙特卡洛模拟的结果,其中包括一种创新的事件重建算法,以支持探测器的声称性能。
We describe the concept of a new gamma ray scintronic detector targeting a time resolution of the order of 25 ps FWHM, with millimetric volume reconstruction and high detection efficiency. Its design consists of a monolithic large PbWO4 scintillating crystal with an efficient photocathode directly deposited on it. With an index of refraction higher for the photocathode than for the crystal, this design negates the total reflection effect of optical photons at the crystal/photo-detector optical interface, and thus largely improves optical coupling between the crystal and the photodetector. This allows to detect efficiently the Cherenkov light produced by 511 keV photoelectric conversions in PbWO4, and to optimize the detector time resolution. Furthermore, the low-yield, fast scintillation light produced additionally by PbWO4 increases the detected photon statistics by a factor 10, thus fostering accurate (3 dimensional) localization of the gamma ray interaction within the crystal and providing a fair measurement of the deposited energy. This paper lists the technological challenges that have to be overcome in order to build this scintronic detector. We show that all the key technologies have now been demonstrated and present results of a preliminary Monte Carlo simulation, which include an innovative event reconstruction algorithm to support the claimed performances of the detector.