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Bilateral sidewall engineering Si 1- x Ge x iTFET for low power display application .

Authors :
Lin JT
Chu CJ
Source :
Nanotechnology [Nanotechnology] 2023 Oct 04; Vol. 34 (50). Date of Electronic Publication: 2023 Oct 04.
Publication Year :
2023

Abstract

In this work, we demonstrate the performance enhancement of bottom-gated inductive line-tunneling TFET (iTFET) through the integration of bilateral sidewall engineering with SiGe mole fraction variation, considering the feasibility of the fabrication process. We also employ a metal-semiconductor interface for carrier induction to improve the I <subscript>ON</subscript> , resulting in a lower subthreshold swing average ( S.S <subscript>avg</subscript> ). Using Sentaurus TCAD simulations, we show that the dominant current mechanism is line tunneling, and the hump effect is mitigated by using SiGe with different mole fractions on the sidewalls. Compared to conventional tunnel field-effect transistors, which require at least three doping processes and annealing, the proposed device requires only one doping process and utilizes the metal-semiconductor interface for carrier induction, significantly reducing the fabrication cost and thermal budget. These measurement based simulations show that the S.S <subscript>avg</subscript> is improved to 21.5 mV dec <superscript>-1</superscript> with an I <subscript>ON</subscript> / I <subscript>OFF</subscript> ratio of 106 at V <subscript>D</subscript> = 0.2 V. This is the first time that a TFT with a subthreshold swing of less than 60 mV dec <superscript>-1</superscript> has been proposed, so it will save much more power in the future and displays with high energy efficiency can be realized and widely used in IoT applications.<br /> (© 2023 IOP Publishing Ltd.)

Details

Language :
English
ISSN :
1361-6528
Volume :
34
Issue :
50
Database :
MEDLINE
Journal :
Nanotechnology
Publication Type :
Academic Journal
Accession number :
37708870
Full Text :
https://doi.org/10.1088/1361-6528/acf9ab