Publication | Open Access
Influence of optical material properties on strong coupling in organic semiconductor based microcavities
35
Citations
28
References
2017
Year
Optical MaterialsEngineeringCavity PhotonsOrganic ElectronicsStrong CouplingOptoelectronic DevicesChemistryMicro-optical ComponentSemiconductorsPolariton DynamicOptical PropertiesOptical Material PropertiesNanophotonicsPhotonicsPhotoluminescencePhysicsStokes ShiftPhotonic MaterialsOrganic SemiconductorOrganic MaterialsOrganic Charge-transfer CompoundNatural SciencesApplied PhysicsMetal-clad MicrocavitiesOptoelectronics
The optical properties of organic semiconductors are generally characterised by a number of material specific parameters, including absorbance, photoluminescence quantum yield, Stokes shift, and molecular orientation. Here, we study four different organic semiconductors and compare their optical properties to the characteristics of the exciton-polaritons that are formed when these materials are introduced into metal-clad microcavities. We find that the strength of coupling between cavity photons and excitons is clearly correlated with the absorptivity of the material. In addition, we show that anisotropy strongly affects the characteristics of the formed exciton-polaritons.
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