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超薄硅鳍式场效应晶体管在小于10纳米的栅长区域能良好工作吗?

Can ultra-thin Si FinFETs work well in the sub-10 nm gate-length region?

作者信息

Liu Shiqi, Yang Jie, Xu Lin, Li Jingzhen, Yang Chen, Li Ying, Shi Bowen, Pan Yuanyuan, Xu Linqiang, Ma Jiachen, Yang Jinbo, Lu Jing

机构信息

State Key Laboratory for Mesoscopic Physics and Department of Physics, Peking University, Beijing 100871, P. R. China.

Key Laboratory for the Physics and Chemistry of Nanodevices and Department of Electronics, Peking University, Beijing 100871, P. R. China.

出版信息

Nanoscale. 2021 Mar 18;13(10):5536-5544. doi: 10.1039/d0nr09094h.

Abstract

Fin field-effect transistors (FinFETs) dominate the present Si FETs. However, when the gate length is scaled down to the sub-10 nm region, the experimental Si FinFETs suffer from poor performance due to a large fin width (the minimum value is 3 nm). In this paper, an ultra-thin Si FinFET with a width of 0.8 nm is investigated for the first time by utilizing ab initio quantum transport simulations. Remarkably, even with the gate length down to 5 nm, the on-state current, delay time, power dissipation, and energy-delay product of the optimized perfect ultra-thin Si FinFET still meet the high-performance applications' requirements of the International Technology Roadmap for Semiconductors in the next decade. The overall performance of the simulated ultra-thin Si FinFET is even comparable with that of the typical two-dimensional FETs. Such a good performance can be significantly degraded by the defect. Hence, Si FinFETs have the potential to be scaled down to the sub-10 nm gate length as long as the width is scaled down while keeping a perfect structure.

摘要

鳍式场效应晶体管(FinFET)主导着当前的硅场效应晶体管。然而,当栅极长度缩小到10纳米以下区域时,由于鳍宽度较大(最小值为3纳米),实验性的硅鳍式场效应晶体管性能较差。本文首次利用从头算量子输运模拟研究了宽度为0.8纳米的超薄硅鳍式场效应晶体管。值得注意的是,即使栅极长度降至5纳米,优化后的完美超薄硅鳍式场效应晶体管的导通电流、延迟时间、功耗和能量延迟积仍满足未来十年国际半导体技术路线图对高性能应用的要求。模拟的超薄硅鳍式场效应晶体管的整体性能甚至与典型的二维场效应晶体管相当。这种良好的性能会因缺陷而显著下降。因此,只要在保持完美结构的同时缩小宽度,硅鳍式场效应晶体管就有可能缩小到10纳米以下的栅极长度。

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