Applied Physics Letters · 2011 · 36 citations · 7 references
Device ModelingElectrical EngineeringEngineeringNanoelectronicsElectronic EngineeringStress-induced Leakage CurrentApplied PhysicsHot Carrier EffectBias Temperature InstabilityGate-induced Drain LeakageThinner IlElectronic PackagingThicker IlMicroelectronicsSemiconductor Device
This paper investigates the channel hot carrier stress (CHCS) effects on gate-induced drain leakage (GIDL) current in high-k/metal-gate n-type metal-oxide-semiconductor field effect transistors. It was found that the behavior of GIDL current during CHCS is dependent upon the interfacial layer (IL) oxide thickness of high-k/metal-gate stacks. For a thinner IL, the GIDL current gradually decreases during CHCS, a result contrary to that found in a device with thicker IL. Based on the variation of GIDL current at different stress conditions, the trap-assisted band-to-band hole injection model is proposed to explain the different behavior of GIDL current for different IL thicknesses.
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Review on high-k dielectrics reliability issues
G. Ribes, Jérôme Mitard, M. Denais et al. · IEEE Transactions on Device and Materials Reliability · 2005 · 519 citations
Chih-Hao Dai, Ting‐Chang Chang, Ann‐Kuo Chu et al. · Applied Physics Letters · 2011 · 25 citations