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首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >Transmission of similar to 10 keV electron beams through thin ceramic foils: Measurements and Monte Carlo simulations of electron energy distribution functions
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Transmission of similar to 10 keV electron beams through thin ceramic foils: Measurements and Monte Carlo simulations of electron energy distribution functions

机译:相似的10 keV电子束通过薄陶瓷箔的传输:电子能量分布函数的测量和蒙特卡洛模拟

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摘要

Electron beams with particle energy of similar to 10 keV were sent through 300 nm thick ceramic (Si3N4 + SiO2) foils and the resulting electron energy distribution functions were recorded using a retarding grid technique. The results are compared with Monte Carlo simulations performed with two publicly available packages, Geant4 and Casino v2.42. It is demonstrated that Geant4, unlike Casino, provides electron energy distribution functions very similar to the experimental distributions. Both simulation packages provide a quite precise average energy of transmitted electrons: we demonstrate that the maximum uncertainty of the calculated values of the average energy is 6% for Geant4 and 8% for Casino, taking into account all systematic uncertainties and the discrepancies in the experimental and simulated data.
机译:将具有类似于10 keV的粒子能量的电子束穿过300 nm厚的陶瓷(Si3N4 + SiO2)箔,并使用延迟栅格技术记录所得的电子能量分布函数。将结果与使用两个公共可用程序包Geant4和Casino v2.42执行的蒙特卡洛模拟进行了比较。事实证明,与赌场不同,Geant4提供的电子能量分布功能与实验分布非常相似。两种仿真程序包均提供了相当精确的透射电子平均能量:我们证明了考虑到所有系统不确定性和实验中的差异,Geant4的平均能量计算值的最大不确定性为Casino的为8%和模拟数据。

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