Electrooptical Switching in a One-Dimensional Photonic Crystal

An electrooptical narrow-band switch within wide spectral range on the base of photonic crystal/liquid crystal cell has been designed. The cell consists of thin layer of a planar oriented nematic which is confined by two identical multilayer dielectric mirrors. Presence of defect layer in the center...

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Published in:Molecular crystals and liquid crystals (Philadelphia, Pa. : 2003) Vol. 488; no. 1; pp. 118 - 126
Main Authors: Zyryanov, V. Ya, Gunyakov, V. A., Myslivets, S. A., Arkhipkin, V. G., Shabanov, V. F.
Format: Journal Article
Language:English
Published: Taylor & Francis Group 01-01-2008
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Abstract An electrooptical narrow-band switch within wide spectral range on the base of photonic crystal/liquid crystal cell has been designed. The cell consists of thin layer of a planar oriented nematic which is confined by two identical multilayer dielectric mirrors. Presence of defect layer in the center of periodic structure induces the origin of the spectral windows (defect modes) inside the photonic crystal bandgap of the transmission spectrum. The transmittance of the cell placed between crossed polarizers depends on the matching of wavelengths for the defect modes of two polarizations and their relative phase retardation. In turn the spectral position of defect modes and the phase retardation were controlled by applied voltage that may result both in the addition and diminution of the defect modes intensities.
AbstractList An electrooptical narrow-band switch within wide spectral range on the base of photonic crystal/liquid crystal cell has been designed. The cell consists of thin layer of a planar oriented nematic which is confined by two identical multilayer dielectric mirrors. Presence of defect layer in the center of periodic structure induces the origin of the spectral windows (defect modes) inside the photonic crystal bandgap of the transmission spectrum. The transmittance of the cell placed between crossed polarizers depends on the matching of wavelengths for the defect modes of two polarizations and their relative phase retardation. In turn the spectral position of defect modes and the phase retardation were controlled by applied voltage that may result both in the addition and diminution of the defect modes intensities.
Author Zyryanov, V. Ya
Arkhipkin, V. G.
Gunyakov, V. A.
Shabanov, V. F.
Myslivets, S. A.
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Cites_doi 10.1134/S1063785006110137
10.1080/1464518021000069229
10.1063/1.104045
10.1103/PhysRevLett.83.967
10.1039/tf9332900919
10.1140/epje/i2007-10239-7
10.1143/JJAP.41.L1482
10.1002/3527602593
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References Shabanov V. F. (CIT0003) 2005
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Zyryanov V. Ya. (CIT0013) 1987; 30
Joannopoulos J. D. (CIT0001) 1995
Yariv A. (CIT0004) 1984
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Snippet An electrooptical narrow-band switch within wide spectral range on the base of photonic crystal/liquid crystal cell has been designed. The cell consists of...
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StartPage 118
SubjectTerms defect modes
electrooptical switching
interference
nematic liquid crystals
photonic crystals
polarization
Title Electrooptical Switching in a One-Dimensional Photonic Crystal
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