Publication | Closed Access
Magnetic Plasmon Propagation Along a Chain of Connected Subwavelength Resonators at Infrared Frequencies
161
Citations
14
References
2006
Year
EngineeringMetamaterialsLinear ChainMagnetic Plasmon PropagationElectromagnetic MetamaterialsMagnetoplasmonicsOptical PropertiesNanophotonicsPlasmonic MaterialPhotonicsElectrical EngineeringPhysicsSingle SplitConnected Subwavelength ResonatorsInfrared FrequenciesPlasmonicsNatural SciencesApplied PhysicsEnergy TransportDynamic MetamaterialsOptoelectronics
A one-dimensional magnetic plasmon propagating in a linear chain of single split ring resonators is proposed. The subwavelength size resonators interact mainly through exchange of conduction current, resulting in stronger coupling as compared to the corresponding magneto-inductive interaction. Finite-difference time-domain simulations in conjunction with a developed analytical theory show that efficient energy transfer with signal attenuation of less then 0.57 dB/microm and group velocity higher than 1/4c can be achieved. The proposed novel mechanism of energy transport in the nanoscale has potential applications in subwavelength transmission lines for a wide range of integrated optical devices.
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