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Extracting Phase and Amplitude Modifications of Laser-Coupled Fano Resonances
58
Citations
23
References
2014
Year
Localized Excited StateEngineeringLaser ScienceMagnetic ResonanceAbsorption SpectroscopyAmplitude ModificationsElectronic Excited StateOptical PropertiesFano Line ShapesOptical SpectroscopyPhotonicsQuantum SciencePhysicsQuantum ChemistryFano Line ShapeExcited State PropertyNatural SciencesSpectroscopyApplied PhysicsNonlinear ResonanceOptical Dipole Response
Fano line shapes observed in absorption spectra encode information on the amplitude and phase of the optical dipole response. A change in the Fano line shape, e.g., by interaction with short-pulsed laser fields, allows us to extract dynamical modifications of the amplitude and phase of the coupled excited quantum states. We introduce and apply this physical mechanism to near-resonantly coupled doubly excited states in helium. This general approach provides a physical understanding of the laser-induced spectral shift of absorption-line maxima on a sub-laser-cycle time scale as they are ubiquitously observed in attosecond transient-absorption measurements.
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