Proceedings of the Korean Society Of Semiconductor Equipment Technology (한국반도체및디스플레이장비학회:학술대회논문집)
- 2004.05a
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- Pages.63-66
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- 2004
실리콘 나노튜브 구조의 원자단위 시뮬레이션
Abstract
The responses of hypothetical silicon nanotubes under torsion have been investigated using an atomistic simulation based on the Tersoff potential. A torque, proportional to the deformation within Hooke's law, resulted in the ribbon-like flattened shapes and eventually led to a breaking of hypothetical silicon nanotubes. Each shape change of hypothetical silicon nanotubes corresponded to an abrupt energy change and a singularity in the strain energy curve as a function of the external tangential force, torque, or twisted angle. The dynamics of silicon nanotubes under torsion can be modelled in the continuum elasticity theory.
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