论文标题
使用细粒核乳液研究中子成像应用
Investigation of the neutron imaging applications using fine-grained nuclear emulsion
论文作者
论文摘要
中子成像是一种具有广泛应用的非破坏性检查技术。有关中子成像的重要方面之一是实现微尺尺度的空间分辨率。开发具有高分辨率的中子探测器是一项艰巨的任务。基于细粒核乳液的中子探测器可能适用于高分辨率中子成像应用。高轨道密度是提高中子成像质量的必要条件。但是,在高轨道密度条件下,可用的轨道分析方法难以应用。模拟图像用于确定中子成像所需的轨道密度。得出的结论是,每100美元$ \ times $ 100 $μ$ m $^2 $的订单订单密度为$ 10^4 $ tracks,足以将中子探测器用于成像应用。还研究了具有各种轨道密度和中子传输速率的图像数据集的对比度分辨率。此外,还进行了实验,以对具有已知几何形状的Gadolinium光栅进行中子成像。光栅的结构成功解决了。计算出的1 $σ$ 10-90 \%的边缘响应,使用灰度光学图像的灰度光学图像,其周期性结构为9 $ $ m,为0.945 $ \ pm $ 0.004 $ $ m $ m。
Neutron imaging is a non-destructive inspection technique with a wide range of applications. One of the important aspects concerning neutron imaging is achieving micrometer-scale spatial resolution. Developing a neutron detector with a high resolution is a challenging task. Neutron detectors, based on fine-grained nuclear emulsion, may be suitable for high resolution neutron imaging applications. High track density is a necessary requirement to improve the quality of neutron imaging. However, the available track analysis methods are difficult to apply under high track density conditions. Simulated images were used to determine the required track density for neutron imaging. It was concluded that a track density of the order of $10^4$ tracks per 100 $\times$ 100 $μ$m$^2$ is sufficient to utilize neutron detectors for imaging applications. The contrast resolution was also investigated for the image data sets with various track densities and neutron transmission rates. Moreover, experiments were performed for neutron imaging of the gadolinium-based gratings with known geometries. The structure of gratings was successfully resolved. The calculated 1$σ$ 10-90 \% edge response, using the gray scale optical images of the grating slit with a periodic structure of 9 $μ$m, was 0.945 $\pm$ 0.004 $μ$m.