Experimental and Monte Carlo analyses of a-Se and CsI:Na/a-Se for X-ray imaging

被引:0
|
作者
Choi, JY [1 ]
Park, JK [1 ]
Kang, SS [1 ]
Kim, JY [1 ]
Lee, KH [1 ]
Im, JG [1 ]
Nam, SH [1 ]
机构
[1] Inje Univ, Dept Biomed Engn, Radiat Image Lab, Kimhae, South Korea
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中图分类号
TL [原子能技术]; O571 [原子核物理学];
学科分类号
0827 ; 082701 ;
摘要
In this paper, the pertinence of a solution using thin coplanar selenium as a photosensitive converter requiting only a few tens of volts of bias, associated with a thick columnar coating of sodium-doped cesium iodide scintillator, was evaluated. A new evaporation process for direct CsI:Na deposition on an a-Se layer substrate was developed. The photoluminescence characterization of this scintillator shows a light emission peak centered at 420 nm, as expected, which matches the sensitivity spectrum of selenium. In addition, to optimize the thickness of the CsI:Na/a-Se structure, the X-ray absorption was investigated at various diagnostic X-ray energy levels using the MCNP 4C code. The Monte Carlo simulation results showed that the absorption fraction of 500 mu m-Se film and 180 mu m-CsI(Na) film is about 80% at 60 kVp. The simulation results were verified by comparing these with experimental measurements and results. The measured dark currents were below 300 pA/cm(2) at an electric field of 10 V/mu m for a-Se and CsI:Na/a-Se. The preliminary sensitivity measurements give a signal in the range of about 7.31 and 3.95 nC/cm(2)/mR for 180 mu m-CsI:Tl/a-Se and 500 mu m-Se at the exposure conditions of 60 kVp and 2-mm aluminum filter, respectively.
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页码:4501 / 4505
页数:5
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