IEEE Transactions on Nuclear Science · 1986 · 270 citations · 19 references
EngineeringDefect ToleranceTunneling MicroscopyNanoelectronicsTunnelingTrapped HolesDevice ModelingElectrical EngineeringPhysicsTunneling ModelBias Temperature InstabilityMeasured AnnealingSpatial DependenceMicroelectronicsSilicon DebuggingApplied PhysicsPost-irradiation ResponseBeyond CmosMicroelectronic Circuits
Accurate predictions of the post-irradiation response of microelectronic circuits is an important and difficult problem. We present a tunneling model for MOS structures showing how the post-irradiation annealing deviates from a simple ln(t) dependence for a nonuniform spatial trap distribution. This model is applied to our measurements of post-irradiation response to extract spatial trap distributions for several oxides. Results of this analysis have important implications for testing and hardness assurance--accurate prediction of the long-term response of hardened circuits requires a measure of the deviation from logarithmic annealing.
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Physical Mechanisms Contributing to Device "Rebound"
J.R. Schwank, P.S. Winokur, P. J. McWhorter et al. · IEEE Transactions on Nuclear Science · 1984 · 358 citations