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Paper IPM / P / 9541 |
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Abstract: | |||||
Nano-indentation of circular graphene flakes are studied by using Molecular Dynamics simulation.
We show that the theory of continuum elasticity based on
nonlinear Föpple-Hencky equations
is applicable on a circular suspended graphene flake. Our simulation results are plenty compatible to those results calculated by the nonlinear elasticity theory. We find the force-displacement curves in good
agreement with the recent experimental measurements and conclude they are temperature independent.
We find as well the vibration frequency for such a system and monitor that it behaviors as a sinusoidal manner at small circular graphene size.
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