arXiv · 1605.00166
Dynamical centrosymmetry breaking in graphene
Abstract
We discover an unusual phenomenon that occurs when a graphene monolayer is illuminated by a short and intense pulse at normal incidence. Due to the pulse-induced oscillations of the Dirac cones, a dynamical breaking of the layer's centrosymmetry takes place, leading to the generation of second harmonic waves. We prove that this result can only be found by using the full Dirac equation and show that the widely used semiconductor Bloch equations fail to reproduce this and some other important physics of graphene. Our results open new windows in the understanding of nonlinear light-matter interactions in a wide variety of new 2D materials with a gapped or ungapped Dirac-like dispersion.
Explore related subjects
Keep this discovery
David N. Carvalho, Andrea Marini, Fabio Biancalana. 2016-04-30. Dynamical centrosymmetry breaking in graphene. https://arxiv.org/abs/1605.00166
Cite the original work for its findings. Save a collection to share your selection of sources.