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Optics Letters

Optics Letters

| RAPID, SHORT PUBLICATIONS ON THE LATEST IN OPTICAL DISCOVERIES

  • Editor: Alan E. Willner
  • Vol. 36, Iss. 23 — Dec. 1, 2011
  • pp: 4569–4571

Full-band quantum-dynamical theory of saturation and four-wave mixing in graphene

Zheshen Zhang and Paul L. Voss  »View Author Affiliations


Optics Letters, Vol. 36, Issue 23, pp. 4569-4571 (2011)
http://dx.doi.org/10.1364/OL.36.004569


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Abstract

The linear and nonlinear optical response of graphene are studied within a quantum-mechanical, full-band, steady-state density-matrix model. This nonpurtabative method predicts the saturatable absorption and saturable four-wave mixing of graphene. The model includes τ 1 and τ 2 time constants that denote carrier relaxation and quantum decoherence, respectively. Fits to existing experimental data yield τ 2 < 1 fs due to carrier–carrier scattering. τ 1 is found to be on the timescale from 250 fs to 550 fs , showing agreement with experimental data obtained by differential transmission measurements.

© 2011 Optical Society of America

OCIS Codes
(190.4380) Nonlinear optics : Nonlinear optics, four-wave mixing
(190.4720) Nonlinear optics : Optical nonlinearities of condensed matter

ToC Category:
Nonlinear Optics

History
Original Manuscript: August 5, 2011
Revised Manuscript: October 17, 2011
Manuscript Accepted: October 18, 2011
Published: November 25, 2011

Citation
Zheshen Zhang and Paul L. Voss, "Full-band quantum-dynamical theory of saturation and four-wave mixing in graphene," Opt. Lett. 36, 4569-4571 (2011)
http://www.opticsinfobase.org/ol/abstract.cfm?URI=ol-36-23-4569

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