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Effect of front and back gates on beta-Ga2O3 nano-belt field-effect transistors

Authors
Ahn, ShihyunRen, FanKim, JanghyukOh, SooyeounKim, JihyunMastro, Michael A.Pearton, S. J.
Issue Date
8-8월-2016
Publisher
AMER INST PHYSICS
Citation
APPLIED PHYSICS LETTERS, v.109, no.6
Indexed
SCIE
SCOPUS
Journal Title
APPLIED PHYSICS LETTERS
Volume
109
Number
6
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/87828
DOI
10.1063/1.4960651
ISSN
0003-6951
Abstract
Field effect transistors (FETs) using SiO2 and Al2O3 as the gate oxides for the back and front sides, respectively, were fabricated on exfoliated two-dimensional (2D) beta-Ga2O3 nano-belts transferred to a SiO2/Si substrate. The mechanical exfoliation and transfer process produced nano-belts with smooth surface morphologies and a uniform low defect density interface with the SiO2/Si substrate. The depletion mode nanobelt transistors exhibited better channel modulation with both front and back gates operational compared to either front or back-gating alone. The maximum transconductance was similar to 4.4 mS mm(-1) with front and back-gating and similar to 3.7 mS mm(-1) with front-gating only and a maximum drain source current density of 60 mA mm(-1) was achieved at a drain-source voltage of 10 V. The FETs had on/off ratios of similar to 10(5) at 25 degrees C with gate-source current densities of similar to 2 x 10(-3) mA mm(-1) at a gate voltage of -30 V. The device characteristics were stable over more than a month for storage in air ambient and the results show the potential of 2D beta-Ga2O3 for power nanoelectronics. Published by AIP Publishing.
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