Applied Physics Letters · 2012 · 32 citations · 16 references
Materials ScienceElectrical EngineeringEngineeringNanoelectronicsAsymmetrical Degradation BehaviorBias Temperature InstabilityApplied PhysicsOxide ElectronicsIngazno Thin-film TransistorsSemiconductor MaterialSelf-heating EffectSurrounding OxideMicroelectronicsSemiconductor Device
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.
16
Fully Transparent ZnO Thin‐Film Transistor Produced at Room Temperature
Elvira Fortunato, Pedro Barquinha, Ana Pimentel et al. · Advanced Materials · 2005 · 835 citations
Measurement and modeling of self-heating in SOI nMOSFET's
L.T. Su, J.E. Chung, D.A. Antoniadis et al. · IEEE Transactions on Electron Devices · 1994 · 329 citations