Carbon Nanostructures as an Electromechanical Bicontinuum
arXiv:0704.1305 · doi:10.1103/PhysRevLett.99.045501
Abstract
A two-field model provides an unifying framework for elasticity, lattice dynamics and electromechanical coupling in graphene and carbon nanotubes, describes optical phonons, nontrivial acoustic branches, strain-induced gap opening, gap-induced phonon softening, doping-induced deformations, and even the hexagonal graphenic Brillouin zone, and thus explains and extends a previously disparate accumulation of analytical and computational results.
4 pages 2 figures. Version accepted by Phys. Rev. Lett