September 2024

Journal

High field dielectric response in κ-Ga2O3 films

By:
He, Fang; Jiang, Kunyao; Choi, Yeseul; Aronson, Benjamin; Shetty, Smitha; Tang, Jingyu ; Liu, Bangzhi; Liu, Yongtao ; Kelley, Kyle P; Rayner, Gilbert; Davis, Robert; Porter, Lisa; Trolier-McKinstry, Susan
Journal Name:
Journal of Applied Physics
Page Number:
204101
Volume:
134
Issue Number:
20
Publication Date:
September 9, 2024
View DOI Listing:
https://doi.org/10.1063/5.0169420

Abstract

κ-Ga2O3 has been predicted to be a potential ferroelectric material. In this work, undoped Ga2O3 films were grown by either plasma-enhanced atomic layer deposition (PEALD) or metal organic chemical vapor deposition (MOCVD) on platinized sapphire substrates. 50 nm thick PEALD films with a mixture of κ-Ga2O3 and β-Ga2O3 had a relative permittivity of ∼27, a loss tangent below 2%, and high electrical resistivity up to ∼1.5 MV/cm. 700 nm thick MOCVD films with predominantly the κ-Ga2O3 phase had relative permittivities of ∼18 and a loss tangent of 1% at 10 kHz. Neither film showed compelling evidence for ferroelectricity measured at fields up to 1.5 MV/cm, even after hundreds of cycles. Piezoresponse force microscopy measurements on bare κ-Ga2O3 showed a finite piezoelectric response that could not be reoriented for electric fields up to 1.33 MV/cm.