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Title

Theoretical and experimental study of the Suzuki-phase photonic crystal lattice by angle-resolved photoluminescence spectroscopy

AuthorsAlija, Alfonso R.; Martínez Rodríguez, Luis Javier CSIC; Postigo, Pablo Aitor CSIC ORCID; Sánchez-Dehesa, José; Galli, Matteo; Politi, Alberto; Patrini, M.; Andreani, Lucio C.; Seassal, Christian; Viktorovitch, P.
Keywords[OCIS] Optoelectronics
[OCIS] Photonic integrated circuits
[OCIS] Photoluminescence
Issue Date22-Jan-2007
PublisherOptical Society of America
CitationOptics Express 15(2): 704-713 (2007)
AbstractA complete theoretical and experimental analysis of the photonic band structure for the Suzuki-phase lattice is presented. The band diagrams were calculated by two-dimensional plane wave expansion and three-dimensional guided-mode expansion methods. Angle resolved photoluminescence spectroscopy has been used to measure the emission of the photonic crystal structure realized in active InAsP/InP slabs. Photonic bands with a very low group velocity along an entire direction of the reciprocal lattice have been measured, which may have important applications on future photonic devices. The experimentally determined dispersion is in very good agreement with the calculated photonic bands. The presence of defect modes produced by microcavities in the Suzuki-phase lattice has also been established.
Description10 pages, 8 figures.-- OCIS codes: 250.0250; 250.5300; 250.5230.
Publisher version (URL)http://www.opticsinfobase.org/oe/abstract.cfm?uri=OE-15-2-704
URIhttp://hdl.handle.net/10261/13021
DOI10.1364/OE.15.000704
ISSN1094-4087
Appears in Collections:(IMN-CNM) Artículos

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