Publication | Open Access
Light Transport through the Band-Edge States of Fibonacci Quasicrystals
299
Citations
32
References
2003
Year
PhotonicsEngineeringPhysicsWave OpticOptical PropertiesNon-linear OpticApplied PhysicsDisordered Quantum SystemPorous SiliconBrillouin ScatteringOptoelectronicsLight TransportUltrashort Pulse Interferometry
The propagation of light in nonperiodic quasicrystals is studied by ultrashort pulse interferometry. Samples consist of multilayer dielectric structures of the Fibonacci type and are realized from porous silicon. We observe mode beating and strong pulse stretching in the light transport through these systems, and a strongly suppressed group velocity for frequencies close to a Fibonacci band gap. A theoretical description based on transfer matrix theory allows us to interpret the results in terms of Fibonacci band-edge resonances.
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