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Tamm-plasmon polaritons in one-dimensional photonic quasi-crystals
40
Citations
33
References
2018
Year
PlasmonicsPhotonicsQuantum PhotonicsEngineeringPolariton DynamicPhysicsSuch Surface ModesOptical PropertiesPhotonic MaterialsApplied PhysicsLong-range PeriodicityTamm-plasmon-polariton-like ModesTamm-plasmon PolaritonsDynamic MetamaterialsPhotonic DevicePhotonic CrystalsNanophotonics
We present an investigation to ascertain the existence of Tamm-plasmon-polariton-like modes in one-dimensional (1D) quasi-periodic photonic systems. Photonic bandgap formation in quasi-crystals is essentially a consequence of long-range periodicity exhibited by multilayers and, thus, it can be explained using the dispersion relation in the Brillouin zone. Defining a "Zak"-like topological phase in 1D quasi-crystals, we propose a recipe to ascertain the existence of Tamm-like photonic surface modes in a metal-terminated quasi-crystal lattice. Additionally, we also explore the conditions of efficient excitation of such surface modes along with their dispersion characteristics.
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