Nanoscale mapping of temperature and defect evolution inside operating AlGaN/GaN high electron mobility transistors

Umesh K. Mishra, Jungwoo Joh, Jesús A. del Alamo, L. J. Brillson, Chung-Han Lin, D. R. Doutt, Tyler A. Merz, Michael Hetzer
2009-07-20

SCID:  54.1/zb8vd2a6
We used depth-resolved microcathodoluminescence spectroscopy (DRCLS) and Kelvin probe force microscopy (KPFM) to measure and map the temperature distribution and defect generation inside state-of-the-art AlGaN/GaN-based high electron mobility transistors (HEMTs) on a scale of tens of nanometers during device operation. DRCLS measurements of near band edge energies across the HEMT’s source-gate-drain regions reveal monotonic temperature increases across the submicron gate-drain channel, peaking under the drain side of the gate. DRCLS defect emissions mapped laterally and localized depthwise near the two-dimensional electron gas interface increase with device operation under the drain-side gate and correlate with higher KPFM surface potential maps.
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2009-07-20
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Umesh K. Mishra
Jungwoo Joh
Jesús A. del Alamo
L. J. Brillson
Chung-Han Lin
D. R. Doutt
Tyler A. Merz
Michael Hetzer
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