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Published on: November 12, 2014
Theoretical study of atomic structure and elastic properties of branched silicon nanowires
Pavel B Sorokin1, Alexander G Kvashnin, Dmitry G Kvashnin
1Siberian Federal University, 79 Svobodny Avenue, Krasnoyarsk, 660041 Russian Federation. psorokin@rice.edu
Abstract:
The atomic structure and elastic properties of Y-shaped silicon nanowires of "fork"- and "bough"-types were theoretically studied, and effective Young moduli were calculated using Tersoff interatomic potential. The oscillation of fork Y-type branched nanowires with various branch lengths and diameters was studied. In the final stages of the bending, the formation of new bonds between different parts of the wires was observed. It was found that the stiffness of the nanowires is comparable with the stiffness of Y-shaped carbon nanotubes.

