Magnifying Superlens in the Visible Frequency Range
University of Maryland, College Park
Indexed inarxivcrossrefpubmed
Abstract
We demonstrate a magnifying superlens that can be integrated into a conventional far-field optical microscope. Our design is based on a multilayer photonic metamaterial consisting of alternating layers of positive and negative refractive index, as originally proposed by Narimanov and Engheta. We achieved a resolution on the order of 70 nanometers. The use of such a magnifying superlens should find numerous applications in imaging.
Citation impact
732
total citations
- FWCI
- 38.24
- Percentile
- 100%
- References
- 13
Citations per year
Authors
3Topics & keywords
Topics
Keywords
- Superlens
- Optics
- Range (aeronautics)
- Physics
- Materials science
- Evanescent wave
No related works found for this paper.