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Quantum Theory of the Third-Harmonic Generation in Graphene

Abstract

A quantum theory of the third-harmonic generation in graphene is presented. An analytical formula for the nonlinear conductivity tensor σαβγδ(3)(ω,ω,ω)\sigma^{(3)}_{\alpha\beta\gamma\delta}(\omega,\omega,\omega) is derived. Resonant maxima of the third harmonic are shown to exist at low frequencies ωEF/\omega\ll E_F/\hbar, as well as around the frequency ω=2EF/\omega=2E_F/\hbar, where EFE_F is the Fermi energy in graphene. At the input power of a CO2_2 laser (λ10\lambda\approx 10 μ\mum) of about 1 MW/cm2^2 the output power of the third-harmonic (λ3.3\lambda\approx 3.3 μ\mum) is expected to be 50\simeq 50 W/cm2^2.Comment: 5 pages, 3 figure

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