x射线光子与电容器相互作用中的总能量

S. Hassan, G. Scarel
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摘要

背景:在这项研究中,我们通过研究在照明过程中电容器中建立的电压来研究x射线与电容器的相互作用。动机:我们的目的是验证相互作用中守恒的总能量为Pτ,即x射线的平均功率P乘以周期τ的乘积。假设:根据前人的研究,我们的研究是基于电容器的电压响应度πV应该很小的假设。参数πV是产生的电压与x射线的平均功率P的比值,用来测量电容器对x射线的响应性能。方法:我们测量电容器在响应x射线时产生的电压,然后根据已经用红外线和可见光评估的程序确定x射线的平均功率P。结果:在我们的实验中,P值在10- 3w到100w之间。我们的程序使我们能够揭示平均功率P和有效剂量之间的关系,有效剂量是在实际应用中用于测量x射线传输的重要操作参数,例如标准x射线医学成像机。结论:我们相信我们的方法为设计一种可能的x射线功率计铺平了道路,这是目前x射线表征工具市场上缺失的一种工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Total Energy in the Interaction of X-Ray Photons with Capacitors
Context and Background: In this research, we investigate the interaction of X-rays with a capacitor by studying the voltage established in the capacitor during the illumination. Motivation: We aim at verifying that the total energy conserved in the interaction is Pτ, i.e. the product of the average power P times the period τ of the X-rays. Hypothesis: Our investigation relies on the hypothesis that the voltage responsivity πV of the capacitor should be small, according to previous research. The parameter πV is the ratio between the voltage produced and the average power P of the X-rays, and measures the performance of the capacitor in response to the X-rays. Method: We measure the voltage produced by the capacitor in response to the X-rays, and then determine the average power P of the X-rays according to a procedure already assessed with infrared and visible light. Results: In our experiments, P turns out to be in the range between 10-3 W to 100 W. Our procedure enables us to unveil the relationship between the average power P and the effective dose, an important operating parameter used to measure the delivery of X-rays in practical applications, such as standard X-ray medical imaging machines. Conclusions: We believe that our procedure paves the way for designing a possible X-ray power-meter, a tool presently missing in the market of X-ray characterization tools.
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