Paper
27 April 2015 Enhancement of AlGaN/GaN high-electron mobility transistor off-state drain breakdown voltage via backside proton irradiation
F. Ren, Y.-H. Hwang, S. J. Pearton, Erin Patrick, Mark E. Law
Author Affiliations +
Proceedings Volume 9363, Gallium Nitride Materials and Devices X; 936312 (2015) https://doi.org/10.1117/12.2076676
Event: SPIE OPTO, 2015, San Francisco, California, United States
Abstract
Proton irradiation from the backside of the samples were employed to enhance off-state drain breakdown voltage of AlGaN/GaN high electron mobility transistors (HEMTs) grown on Si substrates. Via holes were fabricated directly under the active area of the HEMTs by etching through the Si substrate for subsequent backside proton irradiation. By taking the advantage of the steep drop at the end of proton energy loss profile, the defects created by the proton irradiation from the backside of the sample could be precisely placed at specific locations inside the AlGaN/GaN HEMT structure. There were no degradation of drain current nor enhancement of off-state drain voltage breakdown voltage observed for the irradiated AlGaN/GaN HEMTs with the proton energy of 225 or 275 keV, for which the defects created by the proton irradiations were intentionally placed in the GaN buffer. HEMTs with defects placed in the 2 dimensional electron gas (2DEG) channel region and AlGaN barrier using 330 or 340 keV protons not only showed degradation of drain current, but also exhibited improvement of the off-state drain breakdown voltage. FLOODS TCAD finite-element simulations were performed to confirm the hypothesis of a virtual gate formed around the 2DEG region to reduce the peak electric field around the gate edges and increase the off-state drain breakdown voltage.
© (2015) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
F. Ren, Y.-H. Hwang, S. J. Pearton, Erin Patrick, and Mark E. Law "Enhancement of AlGaN/GaN high-electron mobility transistor off-state drain breakdown voltage via backside proton irradiation", Proc. SPIE 9363, Gallium Nitride Materials and Devices X, 936312 (27 April 2015); https://doi.org/10.1117/12.2076676
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KEYWORDS
Field effect transistors

Gallium nitride

Silicon

Transistors

Floods

TCAD

Interfaces

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