Imaging principle and experiment results of an 11 MeV low-energy proton radiography system

被引:3
|
作者
李一丁 [1 ]
张小丁 [1 ]
魏涛 [1 ]
赵良超 [1 ]
何小中 [1 ]
马超凡 [1 ]
杨国君 [1 ]
江孝国 [1 ]
机构
[1] Institute of Fluid Physics, CAEP
基金
中国国家自然科学基金;
关键词
Proton radiography; Multiple coulomb scattering; Zumbro lens system; Radiation length; Fourier plane;
D O I
10.13538/j.1001-8042/nst.25.060203
中图分类号
TL506 [加速器参数的测量];
学科分类号
摘要
Differing from radiography without lens system, the high-energy proton radiography(PRAD) uses Zumbro lens system to focus the penetrating protons. Since the Zumbro lens system is able to limit the range of multiple Coulomb scattering angles of the protons, the low-energy PRAD with Zumbro lens system is also feasible,although the attenuation of probing protons in the object is negligible. Low-energy PRAD is superior to the high-energy PRAD for diagnosing the objects of small thicknesses. To verify the imaging principle of Zumbro lens system, 11 MeV PRAD experiments were performed at the China Academy of Engineering Physics(CAEP)recently. The experiment results demonstrated that this 11 MeV PRAD was able to radiograph objects of area density less than 2.7 × 10-2 g/cm2 and the area density discrepancy less than 2.3% could be distinguished.
引用
收藏
页码:33 / 37
页数:5
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