反向散射(电子邮件)
扫描仪
材料科学
电压
光学
传输(电信)
管(容器)
特征(语言学)
计算机科学
X射线管
人工智能
物理
无线
电信
电极
语言学
哲学
复合材料
量子力学
阳极
作者
Geunyoung An,Junsung Park,Byeong-no Lee,Seonkwang Yoon,Hee Seo
标识
DOI:10.1088/1748-0221/19/01/c01034
摘要
Abstract In the Republic of Korea, for the purpose of security screening at ports and airports, the present system for inspecting small cargo/luggage relies on transmission X-ray imaging, with which discernment of organic and powder-form materials in images is difficult. Backscatter X-ray imaging techniques, contrastingly, are sensitive to organic materials (i.e., low-Z elements) due to a higher probability of Compton scattering relative to other photon interactions. Such techniques, therefore, have the potential to be used in security screening systems for the detection of organic compounds such as drugs and explosives. In the present study, a prototype backscatter X-ray security scanner for luggage screening was developed, and its performance was evaluated at various tube voltages. It was found that the isolation contrast, which indicates the minimum discernible thickness of a plastic panel when the background material of the image is steel, was approximately 1 mm at the tube voltage of 120 kVp. Moreover, amorphously shaped contraband articles randomly hidden inside the luggage were clearly visible at tube voltages ranging from 80 to 160 kVp. The developed backscatter X-ray security scanner is expected to provide improved detection efficiency for thin objects and/or illicit organic materials compared to a transmission-based X-ray imaging system.
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