MOSFET
量子隧道
场效应晶体管
晶体管
硅
非平衡态热力学
热化
材料科学
光电子学
物理
拓扑(电路)
电气工程
工程类
热力学
电压
作者
Weizhuo Gan,Raphaël Prentki,Fei Liu,Jianhui Bu,Kun Luo,Qingzhu Zhang,Huilong Zhu,Zhenhua Wu,Tianchun Ye,Huaxiang Yin,Zhenhua Wu,Hong Guo
标识
DOI:10.1109/ted.2020.2988855
摘要
The cold source field-effect transistor (CSFET), enabled by novel source engineering, is a promising alternative to achieve sub-60 mV/dec steep-slope switching. For the first time, we develop an industry-standard TCAD approach for the CSFET with an effective cold carrier density of states (DOS) model which captures the underlying physics of DOS engineering, cold carrier injection, and thermalization in the device. The simulation scheme uses nonequilibrium Green's function (NEGF) simulation for calibration. The effects of source engineering, rethermalization, and channel tunneling are extensively investigated on a Si-based double-gate CSFET. Its merits are highlighted by comparison with a conventional MOSFET under various temperatures, thicknesses, and gate lengths, showing improved I ON I OFF in ultrascaled MOSFET.
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