Title of article :
Design of parallel dual-energy X-ray beam and its performance for security radiography
Author/Authors :
Hyun Kim، نويسنده , , Kwang and Min Myoung، نويسنده , , Sung and Hyun Chung، نويسنده , , Yong، نويسنده ,
Abstract :
A new concept of dual-energy X-ray beam generation and acquisition of dual-energy security radiography is proposed. Erbium (Er) and rhodium (Rh) with a copper filter were positioned in front of X-ray tube to generate low- and high-energy X-ray spectra. Low- and high-energy X-rays were guided to separately enter into two parallel detectors. Monte Carlo code of MCNPX was used to derive an optimum thickness of each filter for improved dual X-ray image quality. It was desired to provide separation ability between organic and inorganic matters for the condition of 140 kVp/0.8 mA as used in the security application. Acquired dual-energy X-ray beams were evaluated by the dual-energy Z-map yielding enhanced performance compared with a commercial dual-energy detector. A collimator for the parallel dual-energy X-ray beam was designed to minimize X-ray beam interference between low- and high-energy parallel beams for 500 mm source-to-detector distance.
Keywords :
Dual-energy Z-map , Dual-energy X-ray , Security radiography
Journal title :
Astroparticle Physics