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Monte Carlo studies of a novel X-ray tube anode design

机译:蒙特卡洛研究新型X射线管阳极设计

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摘要

When energetic electrons are incident on high atomic number absorbers, a substantial fraction is back-scattered. This phenomenon is responsible for several undesirable effects in X-ray tubes, in particular a reduction in the X-ray output. The extent of this shortfall has been estimated by using Monte Carlo simulation to start electrons at increasing depth inside the anode, the results indicating that an output enhancement of nearly 50% could be achieved in principle if the electrons wasted in back-scatter events could be trapped inside a tungsten anode. To test this idea a further set of simulations were done for a novel anode geometry. Results showed that X-ray tube efficiencies might be substantially enhanced by this approach.
机译:当高能电子入射到高原子序数吸收体上时,很大一部分被反向散射。这种现象是X射线管中几种不良影响的原因,特别是X射线输出的减少。通过使用蒙特卡洛模拟在阳极内部越来越深的深度启动电子,可以估算出这种不足的程度,结果表明,如果将电子浪费在反向散射事件中,则原则上可以实现近50%的输出增强。被困在钨阳极内。为了检验这一想法,对一种新颖的阳极几何形状进行了另一组模拟。结果表明,这种方法可能会大大提高X射线管的效率。

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