Design of nanofilters for optical nanocircuits
- 9 April 2008
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review B
- Vol. 77 (14) , 144107
- https://doi.org/10.1103/physrevb.77.144107
Abstract
We theoretically and numerically study the design of optical “lumped” nanofiltering devices in the framework of our recently proposed paradigm for optical nanocircuits. In particular, we present a design of basic filtering elements, such as low-pass, pass-band, stop-band, and high-pass lumped nanofilters, for use in optical nanocircuits together with more complex designs, such as multizero or multipole nanofilters, to work at THz, infrared, and optical frequencies. Following the nanocircuit theory, we show how it is possible to design such complex frequency responses by applying simple rules, similar to those in rf circuit design, and we compare the frequency response of these optical nanofilters with classic filters in rf circuits. These findings introduce a theoretical foundation for the fabrication of nanofilters in optical lumped nanocircuit devices.Keywords
All Related Versions
This publication has 23 references indexed in Scilit:
- Nanoinsulators and nanoconnectors for optical nanocircuitsJournal of Applied Physics, 2008
- Parallel, series, and intermediate interconnections of optical nanocircuit elements 2 Nanocircuit and physical interpretationJournal of the Optical Society of America B, 2007
- Circuits with Light at Nanoscales: Optical Nanocircuits Inspired by MetamaterialsScience, 2007
- Three-dimensional nanotransmission lines at optical frequencies: A recipe for broadband negative-refraction optical metamaterialsPhysical Review B, 2007
- Coupling of optical lumped nanocircuit elements and effects of substratesOptics Express, 2007
- Optical ‘Shorting Wires’Optics Express, 2007
- Theory of linear chains of metamaterial/plasmonic particles as subdiffraction optical nanotransmission linesPhysical Review B, 2006
- Plasmonics: the next chip-scale technologyMaterials Today, 2006
- Optical nanotransmission lines: synthesis of planar left-handed metamaterials in the infrared and visible regimesJournal of the Optical Society of America B, 2006
- Circuit Elements at Optical Frequencies: Nanoinductors, Nanocapacitors, and NanoresistorsPhysical Review Letters, 2005