English

Graphene infrared light emitting diode (GILED)

Mesoscale and Nanoscale Physics 2016-08-19 v1

Abstract

The present Letter proposes a device based on graphene for infrared light emission. It is based on a n- and p-doped monolayer graphene (MGs), with Fermi energies EFE_F and -EFE_F, respectively, sandwiching a bilayer graphene (BG) with bandgap Λ=2eVgΔ2EF\Lambda=2|eV_g-\Delta|\geq 2E_F, where VgV_g is the gate voltage across the BG and Δ\Delta the sub-lattice energy difference into each layer of the BG. This device works as simple as tuning the gate voltage to decrease the BG bandgap down to 2EF2E_F; and, once this condition is fulfilled, a current flows from the n-doped MG to the p-doped MG. However, when electrons achieve the other side of the device, i.e., into the p-doped MG, their energies (EFE_F) are much bigger than the holes energies (EF-E_F), and thus these electrons decay emitting infrared photons.

Keywords

Cite

@article{arxiv.1608.05388,
  title  = {Graphene infrared light emitting diode (GILED)},
  author = {Z. Z. Alisultanov and M. S. Reis},
  journal= {arXiv preprint arXiv:1608.05388},
  year   = {2016}
}

Comments

3 pgs, 1 figure with 3 sub-figures

R2 v1 2026-06-22T15:23:40.715Z