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Cohesive band structure of carbon nanotubes for applications in quantum transport

机译:内聚的碳纳米管的能带结构应用在量子传输

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摘要

An integrated cohesive band structure of carbon nanotubes (CNTs) applicable to all chirality directions (n, m), starting from the Dirac cone of a graphene nanolayer in fc-space, is demarcated, in direct contrast to dissimilar chiral and achiral versions in the published literature. The electron wave state of a CNT is quantized into one-dimensional (1-D) nanostructure with a wrapping mode, satisfying the boundary conditions from one Dirac K-point to an equivalent neighboring one with an identical phase and returning to the same K point. The repetitive rotation for an identical configuration with added band index (n-m)mod3, yields one metallic (M) with zero bandgap corresponding to (n-m)mod3 = 0, semiconducting state SC1 with (n-m)mod3 = 1 and SC2 with (n-m)mod3 = 2. The band gap and effective mass of SC2 state are twice as large as those of SC1 state. A broad-spectrum expression signifying the linear dependence of the effective mass on the bandgap is obtained. Both the Fermi energy and the intrinsic velocity limiting the current to the saturation level is calculated as a function of the carrier concentration. Limitations of the parabolic approximation are pointed out. Several new features of the band structure are acquired in a seamlessly unified mode for all CNTs, making it suitable for all-encompassing applications. Applications of the theory to high-field transport are advocated with an example of a metallic CNT, in agreement with experimental observations. The mechanism behind the breakdown of the linear current-voltage relation of Ohm's law and the associated surge in resistance are explained on the basis of the nonequilibrium Arora's distribution function (NEADF). These results are important for the performance evaluation and characterization of a variety of applications on CNT in modern nanoscale circuits and devices.
机译:一个集成的凝聚力能带结构的碳纳米管适用于所有手性方向(n, m),从狄拉克锥的石墨烯nanolayer fc-space,划分,在不同的直接对比手性和非手性的版本出版文学。量化成一维(一维)纳米结构的包装模式,令人满意从一个狄拉克K-point边界条件一个等价的周边有一个相同的阶段和返回相同的K点。重复相同的旋转配置添加带指数(n - m) mod3,收益率一金属(M)零隙对应于(n - m) mod3 = 0,半导体国家那么mod3 = 1,星际2 (n - m)(n - m) mod3 = 2。星际2的状态是那么的两倍状态。线性相关的有效质量隙。内在的速度限制电流计算饱和度的函数承运人的浓度。指出抛物线近似。能带结构的新特性对所有碳纳米管在无缝统一模式,它适合包罗万象的应用程序。应用理论的轨迹运输是提倡的一个例子金属问,在协议与实验观察。的线性电流电压电阻的关系法律和相关的阻力激增解释了非平衡的基础上Arora的分布函数(NEADF)。结果是重要的性能各种各样的评价和表征在现代纳米电路应用在问和设备。

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