Publication | Open Access
Polariton ring currents and circular dichroism of Mg-porphyrin in a chiral cavity
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Citations
50
References
2022
Year
Chiral CavityPhotonicsEngineeringTime Reversal SymmetryPhysicsPhotochemistryOptical PropertiesChiral Optical CavityNatural SciencesMechanistic PhotochemistryPhotochromismMolecular SwitchPolariton Ring CurrentsChiral Optical CavitiesChemistryPhotophysical PropertyBiophysicsCircular Dichroism
By placing Mg-porphyrin molecules in a chiral optical cavity, time reversal symmetry is broken, and polariton ring currents can be generated with linearly polarized light, resulting in a circular dichroism signal. Since the electronic state degeneracy in the molecule is lifted by the formation of chiral polaritons, this signal is one order of magnitude stronger than the bare molecule signal induced by circularly polarized light. Enantiomer-selective photochemical processes in chiral optical cavities is an intriguing future possibility.
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