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arXiv:1003.4419·v3·Mesoscale and Nanoscale Physics

Tree-level electron-photon interactions in graphene

Matthew Mecklenburg🇺🇸 · Jason Woo🇺🇸 · B.C. Regan🇺🇸

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Abstract

Graphene's low-energy electronic excitations obey a 2+1 dimensional Dirac Hamiltonian. After extending this Hamiltonian to include interactions with a quantized electromagnetic field, we calculate the amplitude associated with the simplest, tree-level Feynman diagram: the vertex connecting a photon with two electrons. This amplitude leads to analytic expressions for the 3D angular dependence of photon emission, the photon-mediated electron-hole recombination rate, and corrections to graphene's opacity and dynamic conductivity for situations away from thermal equilibrium, as would occur in a graphene laser. We find that Ohmic dissipation in perfect graphene can be attributed to spontaneous emission.

Comments: 5 pages, 3 figures

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