Temperature Dependence of Low‐Frequency Noise Characteristics of NiOx/β‐Ga2O3 p–n Heterojunction Diodes

Author:

Ghosh Subhajit12ORCID,Mudiyanselage Dinusha Herath3ORCID,Kargar Fariborz12ORCID,Zhao Yuji4ORCID,Fu Houqiang3ORCID,Balandin Alexander A.12ORCID

Affiliation:

1. Department of Materials Science and Engineering University of California Los Angeles CA 90095 USA

2. Department of Electrical and Computer Engineering University of California Riverside CA 92521 USA

3. School of Electrical, Computer, and Energy Engineering Arizona State University Tempe AZ 85287 USA

4. Department of Electrical and Computer Engineering Rice University Houston TX 77005 USA

Abstract

AbstractTemperature dependence of the low‐frequency electronic noise in NiOx/β‐Ga2O3 pn heterojunction diodes is reported. The noise spectral density is of the 1/f‐type near room temperature but shows signatures of Lorentzian components at elevated temperatures and at higher current levels (f is the frequency). It is observed that there is an intriguing non‐monotonic dependence of the noise on temperature near T = 380 K. The Raman spectroscopy of the device structure suggests material changes, which results in reduced noise above this temperature. The normalized noise spectral density in such diodes is determined to be on the order of 10−14 cm2 Hz−1 (f = 10 Hz) at 0.1 A cm−2 current density. In terms of the noise level, NiOx/β‐Ga2O3 p–n diodes perform excellently for new technology and occupy an intermediate position among devices of various designs implemented with different ultra‐wide‐bandgap semiconductors. The obtained results are important for understanding the electronic properties of NiOx/β‐Ga2O3 heterojunctions and contribute to the development of noise spectroscopy as the quality assessment tool for new electronic materials and device technologies.

Funder

Energy Frontier Research Centers

Publisher

Wiley

Subject

Electronic, Optical and Magnetic Materials

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