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Feasibility study of a plasma display-like radiation detector for X-ray imaging

机译:用于X射线成像的类似等离子体显示器的辐射探测器的可行性研究

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In this study we have investigated a 2-dimensional gas type detector based on plasma display technology as a candidate for the flat-panel radiation detector. By using the Garfield code, the dependence of X-ray absorption and multiplication on gas composition, cell gap and electric field were examined. Considering the simulation results, three prototype detectors were designed and fabricated. The performance of these detectors was evaluated by measuring the collected charge density, dark current density and sensitivity. The collected charge had the highest value at a condition when Xe 100% and 2.8 mm gap was 108.8 nC/cm ~2 at 1000 V. The dark current of the same detector was varied from 0.0095 to 0.10 nA/cm ~2 and about a fourth of the dark current density of a-Se based detector was at the bias range of 100-1000 V. The sensitivity of Xe 100% and 2.8 mm detector was 0.20 nC/mR·cm ~2 at 0.36 V/um. It is about a tenth lower than that of a-Se based detector at 10 V/um.
机译:在这项研究中,我们研究了一种基于等离子显示技术的二维气体类型探测器,作为平板辐射探测器的候选者。通过使用加菲猫代码,检查了X射线吸收和倍增对气体成分,单元间隙和电场的依赖性。考虑到仿真结果,设计并制造了三个原型探测器。通过测量收集的电荷密度,暗电流密度和灵敏度来评估这些检测器的性能。在1000 V下Xe 100%和2.8 mm间隙为108.8 nC / cm〜2的条件下,收集的电荷具有最高值。同一检测器的暗电流在0.0095至0.10 nA / cm〜2之间变化,大约为1。基于a-Se的探测器的暗电流密度的四分之一在100-1000 V的偏置范围内。Xe 100%和2.8 mm探测器的灵敏度在0.36 V / um时为0.20 nC / mR·cm〜2。它比10 V / um的基于a-Se的探测器低约十分之一。

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