论文标题

用于同位素分布的3D测定的全数字相关粒子成像系统

An all-digital associated particle imaging system for the 3D determination of isotopic distributions

论文作者

Unzueta, Mauricio Ayllon, Ludewigt, Bernhard, Mak, Brian, Tak, Tanay, Persaud, Arun

论文摘要

相关的粒子成像(API)是一种用于同位素分布的3D测定的非破坏性核技术。通过检测与位置和时间溶解检测器相关的甲状腺 - 三位体融合反应中与发射中子相关的α粒子,可以确定14.1 MeV中子的方向及其发射时间。采用这种方法,在非弹性中子散射事件中排放的同位素特征γ射线可以与中子相互作用位置相关。由密封型中子发电机,伽马探测器和对位置敏感的α探测器组成的API系统,设计,构造和表征。该系统用常见的土壤元素进行了测试,并显示对12C,16o,28si,27al和56fe敏感。我们方法的新方面是使用Yttrium-Aluminum-perovskite(YAP)闪烁体,使用蓝宝石窗口而不是光纤面板将光传输到光电倍增器和全数字数据采集系统。我们提供了对系统的描述,并显示了模拟和实验结果,该系统显示了1 mm的α检测器上的位置分辨率,使用6.2 cm的LABR3检测器的深度分辨率以及4.5度的角度分辨率。此外,我们为上述元素提供了单元素伽马响应测量值,以及与蒙特卡洛模拟的比较(MCNP6)。

Associated particle imaging (API) is a non-destructive nuclear technique for the 3D determination of isotopic distributions. By detecting the alpha particle associated with the emitted neutron in the deuterium-tritium fusion reaction with a position- and time-resolving detector, the direction of the 14.1 MeV neutron and its time of emission can be determined. Employing this method, isotope characteristic gamma rays emitted in inelastic neutron scattering events can be correlated with the neutron interaction location. An API system consisting of a sealed-type neutron generator, gamma detectors, and a position-sensitive alpha detector was designed, constructed, and characterized. The system was tested with common soil elements and shown to be sensitive to 12C, 16O, 28Si, 27Al, and 56Fe. New aspects of our approach are the use of a yttrium-aluminum-perovskite (YAP) scintillator, using a sapphire window instead of a fiber-optic faceplate for light transport to the photomultiplier, and the all-digital data acquisition system. We present a description of the system with simulations and experimental results that show a position resolution on the alpha detector of 1 mm, a depth resolution using a LaBr3 detector of 6.2 cm, and an angular resolution of 4.5 degrees. Additionally, we present single-element gamma response measurements for the elements mentioned above together with a comparison to Monte Carlo simulations (MCNP6).

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