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Microstructures in Polymer Fibres for Optical Fibres, THz Waveguides, and Fibre-Based Metamaterials
Author(s) -
Alexander Argyros
Publication year - 2013
Publication title -
isrn optics
Language(s) - English
Resource type - Journals
ISSN - 2090-7826
DOI - 10.1155/2013/785162
Subject(s) - materials science , fabrication , terahertz radiation , metamaterial , optical fiber , microstructured optical fiber , context (archaeology) , polymer , optoelectronics , microstructure , photonic crystal , photonic crystal fiber , optics , wavelength , composite material , plastic optical fiber , fiber , fiber optic sensor , physics , medicine , paleontology , alternative medicine , pathology , biology
This paper reviews the topic of microstructured polymer fibres in the fields in which these have been utilised: microstructured optical fibres, terahertz waveguides, and fibre-drawn metamaterials. Microstructured polymer optical fibres were initially investigated in the context of photonic crystal fibre research, and several unique features arising from the combination of polymer and microstructure were identified. This lead to investigations in sensing, particularly strain sensing based on gratings, and short-distance data transmission. The same principles have been extended to waveguides at longer wavelengths, for terahertz frequencies, where microstructured polymer waveguides offer the possibility for low-loss flexible waveguides for this frequency region. Furthermore, the combination of microstructured polymer fibres and metals is being investigated in the fabrication of metamaterials, as a scalable method for their manufacture. This paper will review the materials and fabrication methods developed, past and current research in these three areas, and future directions of this fabrication platform.

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