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A cargo inspection system based on pulsed fast neutron analysis (PFNA)
1Shielding Design, Dosimetry and Radiation Protection, San Carlos, CA 94070, USA. nisy@comcast.net
A new cargo inspection system uses pulsed fast neutron analysis (PFNA) to detect hidden explosives and contraband in trucks. This advanced scanning technology analyzes elemental composition for enhanced border security.
Area of Science:
- Nuclear Physics and Engineering
- Applied Physics
- Security and Detection Technologies
Background:
- Current border security methods face challenges in detecting concealed threats within cargo.
- Pulsed Fast Neutron Analysis (PFNA) offers a non-intrusive method for material identification.
Purpose of the Study:
- To describe the design and shielding considerations for a cargo inspection system utilizing PFNA.
- To detail the facility layout, including the accelerator and inspection tunnel.
- To outline the radiation source terms relevant for shielding design.
Main Methods:
- Generation of neutrons via deuteron interaction with a deuterium target.
- Utilizing a collimated pulsed fast neutron beam to interrogate cargo.
- Detecting characteristic secondary gamma rays to determine elemental composition and location of objects.
Main Results:
- The system is designed to identify explosives and contraband by analyzing elemental signatures.
- The facility includes a shielded accelerator room and a partially shielded inspection tunnel.
- Shielding design accounts for the specific radiation source terms of the PFNA system.
Conclusions:
- The described PFNA cargo inspection system provides a robust solution for border security.
- The shielding design ensures operational safety for personnel and the environment.
- This technology enables effective detection of hidden threats in diverse cargo.
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