A brief review of metamaterial applications to source and scattering problems in the microwave and optical frequency regimes is given. Issues associated with modelling these systems are discussed. Electrically small radiating and scattering systems are emphasized. Single negative, double negative, and zero-index versions of these metamaterial-based systems are introduced that provide a means to manipulate their efficiency, bandwidth, and directivity characteristics.
Contents
-
Open AccessMetamaterial-based source and scattering enhancements: From microwave to optical frequenciesSeptember 1, 2006
-
September 1, 2006
-
Open AccessA review of size and geometrical factors influencing resonant frequencies in metamaterialsSeptember 1, 2006
-
September 1, 2006
-
September 1, 2006
-
September 1, 2006
-
Open AccessNear field imaging in microwave regime using double layer split-ring resonator based metamaterialSeptember 1, 2006
-
September 1, 2006
-
September 1, 2006
-
Open AccessOptical guided dispersions and subwavelength transmissions in dispersive plasmonic circular holesSeptember 1, 2006
-
September 1, 2006
-
Open AccessElectromagnetic modelling of 3D periodic structure containing magnetized or polarized ellipsoidsSeptember 1, 2006