Resonance cones in cylindrically anisotropic metamaterials: a Green’s function analysis
Author:
Funder
National Science Foundation (NSF;
United States Department of Energy (DOE;
United States Army Research Office (USARO;
Publisher
The Optical Society
Subject
Atomic and Molecular Physics, and Optics
Reference11 articles.
1. Far-field subdiffraction optical microscopy using metamaterial crystals: Theory and simulations
2. Optical Hyperlens: Far-field imaging beyond the diffraction limit
3. Far-Field Optical Hyperlens Magnifying Sub-Diffraction-Limited Objects
4. Magnifying Superlens in the Visible Frequency Range
5. Experimental demonstration of an acoustic magnifying hyperlens
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