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Failure Defects Observed in Post-Breakdown High-κ/Metal Gate Stack Mosfet
Conference proceeding

Failure Defects Observed in Post-Breakdown High-κ/Metal Gate Stack Mosfet

R. Ranjan, K.L. Pey, C.H. Tung, D.S. Ang, L.J. Tang, T. Kauerauf, R. Degraeve, G. Groeseneken, S. De Gendt, L.K. Bera, …
2006 IEEE International Reliability Physics Symposium Proceedings, pp.590-594
03/2006

Abstract

breakdown path Crystalline materials Crystallization Degradation Dielectric materials dielectric-breakdown-induced epitaxy dielectric-breakdown-induced migration Electric breakdown FETs Hafnium oxide Leakage current localized amorphization metal-like filament metal/high-κ delamination MOSFET circuits Tin
Failure defects associated with breakdown of the HfO 2 /TaN/TiN gate stack metal-oxide-semiconductor field effect transistor (MOSFET) are studied. Very fast degradation rate in the gate leakage current is attributed to gate material filament of the breakdown path, leading to various degrees of severity in micro structural damages in the narrow width MOSFET structure. This observation is different from that reported for the poly crystalline-silicon (poly-Si) gate MOSFET. On the other hand, some common failure mechanisms driven by gate dielectric breakdown, such as dielectric-breakdown-induced epitaxy (DBIE) and silicide migration i.e. dielectric-breakdown-induced migration (DBIM), previously observed in poly-Si gate MOSFET are still found in metal gate MOSFET

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