Publication | Open Access
Quasienergy Spectroscopy of Excitons
65
Citations
21
References
1999
Year
Thz PhotonicsLocalized Excited StateEngineeringNonlinear OpticsExcitation Energy TransferQuasienergy SpectroscopyElectronic Excited StateOptical PropertiesIntense Thz IrradiationQuantum MaterialsQuasienergy CrossingsPhotonicsPhysicsNon-linear OpticQuantum ChemistryQuasienergy SpectrumNatural SciencesSpectroscopyApplied PhysicsTerahertz TechniqueOptoelectronics
We theoretically study nonlinear optics of excitons under intense THz irradiation. In particular, the linear near-infrared absorption and resonantly enhanced nonlinear sideband generation are described. We predict a rich structure in the spectra which can be interpreted in terms of the quasienergy spectrum of the exciton, via a remarkably transparent expression for the susceptibility, and show that the effects of strongly avoided quasienergy crossings manifest themselves directly, both in the absorption and transmitted sidebands.
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