Conduction band structure and electron mobility in uniaxially strained Si via externally applied strain in nanomembranes
نویسندگان
چکیده
Strain changes the band structure of semiconductors. We use x-ray absorption spectroscopy to study the change in the density of conduction band (CB) states when silicon is uniaxially strained along the [1 0 0] and [1 1 0] directions. High stress can be applied to silicon nanomembranes, because their thinness allows high levels of strain without fracture. Strain-induced changes in both the sixfold degenerate valleys and the eightfold degenerate L valleys are determined quantitatively. The uniaxial deformation potentials of both and L valleys are directly extracted using a strain tensor appropriate to the boundary conditions, i.e., confinement in the plane in the direction orthogonal to the straining direction, which correspond to those of strained CMOS in commercial applications. The experimentally determined deformation potentials match the theoretical predictions well. We predict electron mobility enhancement created by strain-induced CB modifications. (Some figures in this article are in colour only in the electronic version)
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