纳米线
材料科学
阈下摆动
CMOS芯片
钻石
晶体管
蚀刻(微加工)
光电子学
缩放比例
MOSFET
物理
纳米技术
数学
量子力学
几何学
电压
图层(电子)
复合材料
作者
Yi-Wen Lin,Hao‐Hsiang Chang,Y.W. Huang,Chong-Jhe Sun,Siao-Cheng Yan,Shan-Wen Lin,Guang-Li Luo,Chien-Ting Wu,Yung‐Chun Wu,Fu-Ju Hou
标识
DOI:10.1109/led.2021.3125059
摘要
We propose that the use of tightly stacked three-dimensional (3D) diamond-shaped Ge nanowire (NW) gate-all-around field-effect transistor (Ge-NW GAAFET) is a feasible approach to continuous scaling. The proposed devices with the Al2O3 dielectric exhibit high ISAT of 1200 $\boldsymbol {\mu } \text{A}/\boldsymbol {\mu } \text{m}$ (pFET) and 1100 $\boldsymbol {\mu } \text{A}/\boldsymbol {\mu } \text{m}$ (nFET), high ION/IOFF ratio of approximately ${1} \times {10}^{{5}}$ , and steep subthreshold swing (SS) close to 70mV/dec. Superior gate control of the Ge-NW GAAFET was confirmed by the 3D TCAD simulation for the sub-3nm node applications. The formation of the tightly stacked Ge NWs is fully compatible with the complementary metal oxide semiconductor (CMOS) technology platform using only alternating isotropic and anisotropic dry etching, thus showing promising potential for extending CMOS scaling in the vertical direction.
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