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Quasi first-principles Monte Carlo modeling of energy dissipation by low-energy electron beams in multi-walled carbon nanotube materials

机译:多壁碳纳米管材料中低能电子束能量消散的准第一原理蒙特卡洛模拟

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摘要

The energy dissipation pattern of low-energy electron beams (0.3–30 keV) in multi-walled carbon nanotube (MWCNT) materials is studied by Monte Carlo simulation taking into account secondary-electron cascade generation. A quasi first-principles discrete-energy-loss model deduced from a dielectric response function description of electronic excitations in MWCNTs is employed whereby both single-particle and plasmon excitations are included in a unified and self-consistent manner. Our simulations provide practical analytical functions for computing depth-dose curves and charged-carrier generation volumes in MWCNT materials under low-energy electron beam irradiation.
机译:考虑到二次电子级联反应的产生,通过蒙特卡洛模拟研究了多壁碳纳米管(MWCNT)材料中低能电子束(0.3-30keV)的能量耗散模式。采用从MWCNTs中电子激发的介电响应函数描述推导的准第一原理离散能量损失模型,从而以统一且自洽的方式同时包含单粒子和等离子体激元激发。我们的模拟为计算低能量电子束辐照下MWCNT材料中的深度剂量曲线和带电载流子产生量提供了实用的分析功能。

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