论文标题
金字塔的新型MUON断层扫描检测器
Novel Muon Tomography Detector for the Pyramids
论文作者
论文摘要
撞击地球表面的宇宙射线武器可用于成像位于躯体检测器上方的地质和人造材料的密度。用于这些测量值的检测器必须能够确定次数的函数。该能力的应用包括地质碳存储,天然气存储,增强的油回收,压缩空气存储,油气和天然气的生产,隧道检测以及人造结构(例如金字塔)中隐藏的房间的检测。对于这些应用,检测器必须很小,坚固且具有操作特征,使其在远程位置(例如低功率要求)中使用。现在正在构建一种新的MUON检测器设计,以对埃及的Khafre金字塔进行测量,以寻找可能存在于结构中的未知空隙。新的探测器设计使用具有波长移动光纤读数的闪烁体的整体板来获取位置信息。该设计将满足操作要求,同时还提供几何形状,可以为不同的测量条件进行修改。
Cosmic-ray muons which impinge upon the Earth's surface can be used to image the density of geological and man-made materials located above a muon detector. The detectors used for these measurements must be capable of determining the muon rate as a function of the angle of incidence. Applications of this capability include geological carbon storage, natural gas storage, enhanced oil recovery, compressed air storage, oil and gas production, tunnel detection, and detection of hidden rooms in man-made structures such as the pyramids. For these applications the detector must be small, rugged, and have operational characteristics which enable its use in remote locations, such as low power requirements. A new muon detector design is now being constructed to make measurements on the Khafre pyramid, in Egypt, to look for unknown voids that might exist in the structure. The new detector design uses monolithic plates of scintillator with wavelength shifting fiber optic readout to obtain location information. This design will meet the operational requirements, while also providing a geometry which can be modified for different measurement conditions.