2014Journal of Vacuum Science & Technology B Nanotechnology and Microelectronics Materials Processing Measurement and PhenomenaOpen access

Effect of low dose γ-irradiation on DC performance of circular AlGaN/GaN high electron mobility transistors

Ya-Hsi Hwang, Yueh‐Ling Hsieh, Lei Lei, Shun Li, F. Ren, S. J. Pearton, Anupama Yadav, Casey M. Schwarz, Max Shatkhin, Luther Wang, Elena Flitsiyan, Leonid Chernyak, Albert G. Baca, Andrew A. Allerman, Carlos Anthony Sanchez, Ivan I. Kravchenko

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Abstract

The changes in direct current performance of circular-shaped AlGaN/GaN high electron mobility transistors (HEMTs) after 60Co γ-irradiation doses of 50, 300, 450, or 700 Gy were measured. The main effects on the HEMTs after irradiation were increases of both drain current and electron mobility. Compton electrons induced from the absorption of the γ-rays appear to generate donor type defects. Drain current dispersions of ∼5% were observed during gate lag measurements due to the formation of a virtual gate between the gate and drain resulting from the defects generated during γ-irradiation.

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The changes in direct current performance of circular-shaped AlGaN/GaN high electron mobility transistors (HEMTs) after 60Co γ-irradiation doses of 50, 300, 450, or 700 Gy were measured. The main effects on the HEMTs after irradiation were increases of both drain current and electron mobility. Compton electrons induced from the absorption of the γ-rays appear to generate donor type defects. Drain current dispersions of ∼5% were observed during gate lag measurements due to the formation of a virtual gate between the gate and drain resulting from the defects generated during γ-irradiation.

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Available abstract

The changes in direct current performance of circular-shaped AlGaN/GaN high electron mobility transistors (HEMTs) after 60Co γ-irradiation doses of 50, 300, 450, or 700 Gy were measured. The main effects on the HEMTs after irradiation were increases of both drain current and electron mobility. Compton electrons induced from the absorption of the γ-rays appear to generate donor type defects. Drain current dispersions of ∼5% were observed during gate lag measurements due to the formation of a virtual gate between the gate and drain resulting from the defects generated during γ-irradiation.

Key concepts: Irradiation, Materials science, Optoelectronics, Transistor, Induced high electron mobility transistor, Electron, Electron mobility, High-electron-mobility transistor

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