核壳结构硅-锗纳米线mosfet的研究

Yue Fu, Jin He, Feng Liu, Jie Feng, Chenyue Ma, Lining Zhang
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引用次数: 1

摘要

本文采用电子结构、能级和通道电流计算的有限元数值方法研究了具有核壳结构的硅锗纳米线mosfet的输运特性。将泊松方程与薛定谔方程耦合用于静电计算,将电子结构与电流输运方程耦合用于通道电流计算,对核壳结构mosfet的电子结构、量子化能级、相关波函数和电荷分布进行自洽求解。此外,基于这些发现,还预测了晶体管性能,包括电容特性和漏极电流。
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Study on the Si-Ge Nanowire MOSFETs with the Core-Shell Structure
This paper investigates the transport properties of the silicon-germanium nanowire MOSFETs with core-shell structure by using a finite element numerical method for electronic structure, energy level, and channel current computation. Coupled Poisson's equation to Schrodinger's equation for electrostatics calculation and electron structure to current transport equation for channel current computation, the electronic structure, quantized energy levels, relevant wave functions and charge distribution are solved selfconsistently for the core-shell structure MOSFETs. Furthermore, based on these findings, the transistor performances, including the capacitance characteristics and drain current, are also predicted.
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