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Time-Dependent Current Distributions of a Two-Terminal Carbon Nanotube-Based Electronic Device

机译:基于两个端子的碳纳米管的电子设备的时变电流分布

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摘要

We have performed time-dependent density-functional theory calculations to simulate the transient electrical response of a carbon nanotube-based electronic device. Time-dependent current density and electrostatic potential distribution are calculated and analyzed. Strong local vortices are observed for the current. In addition, the calculated dynamic admittance confirms that the dynamic response of the two-terminal device can be mapped onto the equivalent electric circuit reported in our previous work [Yam et al. Nanotechnology 2008, 19, 495203].
机译:我们已经执行了与时间有关的密度泛函理论计算,以模拟基于碳纳米管的电子设备的瞬态电响应。计算和分析随时间变化的电流密度和静电势分布。目前观察到强烈的局部涡流。此外,计算出的动态导纳证实了可以将两端设备的动态响应映射到我们先前工作中报告的等效电路上[Yam等人。纳米技术2008,19,495203]。

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