Publication | Open Access
Broadband Fivefold Reduction of Vacuum Fluctuations Probed by Dyes in Photonic Crystals
134
Citations
34
References
2002
Year
Strong Angle-independent ModificationEngineeringChemistryPhotonic CrystalsInverse OpalsOptical PropertiesOptical SpectroscopyPhotophysical PropertyPhotonicsPhysicsLaser DyesPhotonic DeviceExcited State PropertyLaser PhotochemistryNatural SciencesSpectroscopyApplied PhysicsVacuum Fluctuations ProbedBroadband Fivefold Reduction
We observed for the first time a strong angle-independent modification of spontaneous emission spectra from laser dyes in photonic crystals, made of inverse opals in titania. Comparison with spectra from such crystals with much smaller lattice spacing, for which emission is in the long wavelength limit, reveals inhibition of emission up to a factor approximately 5 over a large bandwidth of 13% of the first order Bragg resonance frequency. The center frequency and bandwidth of the inhibition agree with calculated total density of states, while the measured inhibition of vacuum fluctuations is much larger. Because of the specific location of the dye molecules, we likely probe the strongly modulated local photonic density of states.
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