Guided-wave liquid-crystal photonicsPublished as part of a themed issue on optofluidics

In this paper we review the state of the art in the field of liquid-crystal tunable guided-wave photonic devices, a unique type of fill-once, molecular-level actuated, optofluidic systems. These have recently attracted significant research interest as potential candidates for low-cost, highly functi...

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Hauptverfasser: Zografopoulos, D. C, Asquini, R, Kriezis, E. E, d'Alessandro, A, Beccherelli, R
Format: Artikel
Sprache:eng
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Zusammenfassung:In this paper we review the state of the art in the field of liquid-crystal tunable guided-wave photonic devices, a unique type of fill-once, molecular-level actuated, optofluidic systems. These have recently attracted significant research interest as potential candidates for low-cost, highly functional photonic elements. We cover a full range of structures, which span from micromachined liquid-crystal on silicon devices to periodic structures and liquid-crystal infiltrated photonic crystal fibers, with focus on key-applications for photonics. Various approaches on the control of the LC molecular orientation are assessed, including electro-, thermo- and all-optical switching. Special attention is paid to practical issues regarding liquid-crystal infiltration, molecular alignment and actuation, low-power operation, as well as their integrability in chip-scale or fiber-based devices. We review the field of liquid-crystal tunable guided-wave photonic devices, spanning from micromachined liquid-crystals on silicon devices to periodic structures and liquid-crystal infiltrated photonic crystal fibers.
ISSN:1473-0197
1473-0189
DOI:10.1039/c2lc40514h