Origin of self-heating effect induced asymmetrical degradation behavior in InGaZnO thin-film transistors

Tien‐Yu Hsieh, Ting‐Chang Chang, Te-Chih Chen, Ming-Yen Tsai, Yu-Te Chen, Yi‐Chen Chung, Hung‐Che Ting, Chia‐Yu Chen

Applied Physics Letters · 2012 · 32 citations · 16 references

Concepts

Abstract

This letter investigates asymmetrical degradation behavior induced by the self-heating effect in InGaZnO thin-film transistors. Both the surrounding oxide and other thermal insulating material, as well as the low thermal conductivity of the InGaZnO layer itself, cause the self-heating effect in InGaZnO thin-film transistors. The heated channel layer enhances threshold voltage shift, and the evolution of threshold voltage shift is found to be dominated by charge-trapping effect. Moreover, a non-uniform distribution of channel carrier concentration leads to an uneven temperature distribution through the InGaZnO active layer and results in the asymmetrical degradation behavior after self-heating operation.

References

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