English

Electrical Parameters for Planar Transport in Graphene and 2-D Materials

Mesoscale and Nanoscale Physics 2018-09-21 v1 Applied Physics

Abstract

Classical electrodynamics has been revisited with a view to recast the electrical parameters for planar transport in 2-dimensional (2-D) materials like graphene. In this attempt a new line integral, named transverse line integral, with extensive applications in 2-D, is defined. Since the existing divergence theorem in not applicable in 2-D, we introduced a new divergence theorem. A new definition for the in-plane flux of any 2-D vector is introduced. A new vector named electric vector potential is defined and Gauss law is modified in terms of the 2-D flux of the new vector. The new Gauss law in presence of dielectric is obtained and a new electric displacement vector is defined for the 2-D materials. The conduction and displacement current densities in 2-D are defined. Resistance and resistivity in 2-D materials are discussed. The continuity equation for planar transport is derived.

Keywords

Cite

@article{arxiv.1809.07319,
  title  = {Electrical Parameters for Planar Transport in Graphene and 2-D Materials},
  author = {Gananath Dash},
  journal= {arXiv preprint arXiv:1809.07319},
  year   = {2018}
}

Comments

27 pages, 7 Figures, 1 Appendix, 1 Table, 9 references

R2 v1 2026-06-23T04:11:55.982Z