In this paper, we compare measurements of the conduction-band (CB) offset in [110]- and [010]-oriented narrow n-type FinFETs with a model taking into account both strain and quantum confinement. We estimate the complete strain tensor for the scarce strain measurement points available with finiteelement- method simulations of the thermal expansion effect. We found an inhomogeneous compressive strain that increases for smaller fin widths. The experimental CB offset is extracted from temperature-dependent transfer characteristics. The results show a lowering of the CB edge up to 40 meV for fin widths down to 5 nm. These experimental observations compare well with the model, and hence, the band offset can be explained by both quantum confinement and strain.

Strain and Conduction-Band Offset in Narrow n-type FinFETs

ESSENI, David;
2013-01-01

Abstract

In this paper, we compare measurements of the conduction-band (CB) offset in [110]- and [010]-oriented narrow n-type FinFETs with a model taking into account both strain and quantum confinement. We estimate the complete strain tensor for the scarce strain measurement points available with finiteelement- method simulations of the thermal expansion effect. We found an inhomogeneous compressive strain that increases for smaller fin widths. The experimental CB offset is extracted from temperature-dependent transfer characteristics. The results show a lowering of the CB edge up to 40 meV for fin widths down to 5 nm. These experimental observations compare well with the model, and hence, the band offset can be explained by both quantum confinement and strain.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11390/904941
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