Publication | Closed Access
Instantaneous Mapping of Coherently Coupled Electronic Transitions and Energy Transfers in a Photosynthetic Complex Using Angle-Resolved Coherent Optical Wave-Mixing
83
Citations
17
References
2009
Year
EngineeringNonlinear OpticsExcitation Energy TransferCoherent Electronic MotionInstantaneous MappingOptical PropertiesOptical SpectroscopyPhotosynthesisPhotophysical PropertyBiophysicsOptical PumpingPhotonicsQuantum SciencePhysicsNon-linear OpticBiophotonicsQuantum ChemistryQuantum Electronic BeatingQuantum OpticNatural SciencesSpectroscopyApplied PhysicsTransition EnergiesEnergy TransfersCoherent Process
Understanding the role of coherent electronic motion is expected to resolve general questions of importance in macromolecular energy transfer. We demonstrate a novel nonlinear optical method, angle-resolved coherent wave mixing, that separates out coherently coupled electronic transitions and energy transfers in an instantaneous two-dimensional mapping. Angular resolution of the signal is achieved by using millimeter laser beam waists at the sample and by signal relay to the far field; for this we use a high energy, ultrabroadband hollow fiber laser source. We reveal quantum electronic beating with a time-ordered selection of transition energies in a photosynthetic complex.
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