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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. B, Beam Interactions with Materials and Atoms >Rainbow channeling of protons in very short carbon nanotubes with aligned Stone-Wales defects
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Rainbow channeling of protons in very short carbon nanotubes with aligned Stone-Wales defects

机译:具有对齐的Stone-Wales缺陷的极短碳纳米管中质子的彩虹通道

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In this paper proton channeling through armchair single-walled-carbon-nanotubes (SWCNTs) with aligned Stone-Wales defects has been investigated. The energy of the proton beam was 1 GeV, while the lengths of the SWCNTs have been varied from 200 nm up to 1000 nm. The linear density of aligned defects has been varied in the whole range, from minimally up to maximally possible values. Here are presented results of a detailed morphological analysis concerning: the formation, evolution and interaction of the nanotube rainbows. The potential of the SWCNT has been constructed from Molere's expression of the Thomas-Fermi's proton-carbon interaction-energy, using the approximation of the continuous atomic string. Trajectories of the channeled protons were obtained by solving the corresponding classical equations of motions. Distributions of the transmitted protons were obtained by the Monte-Carlo simulation. The shape of angular distributions has been explained in the framework of the theory of nanotube rainbows. The aim of this study is also to investigate the applicability of the proton rainbow channeling for the characterization of nanotubes with aligned Stone-Wales defects.
机译:在本文中,已经研究了质子穿过具有对齐的Stone-Wales缺陷的扶手椅式单壁碳纳米管(SWCNT)的通道。质子束的能量为1 GeV,而SWCNT的长度从200 nm到1000 nm不等。对齐缺陷的线密度在整个范围内变化,从最小到最大可能值。这里是详细形态分析的结果,涉及:纳米管彩虹的形成,演化和相互作用。 SWCNT的潜力是由Molere对Thomas-Fermi的质子-碳相互作用能的表达所构造的,使用了连续原子串的近似值。通道质子的轨迹是通过求解相应的经典运动方程获得的。透射质子的分布通过蒙特卡洛模拟获得。角分布的形状已在纳米管彩虹理论的框架内进行了解释。这项研究的目的还在于研究质子彩虹通道对具有对准的Stone-Wales缺陷的纳米管的表征的适用性。

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