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Modeling of ultrawidely tunable vertical cavity air-gap filters and VCSELs

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dc.contributor.author C. Prott ; F. Romer ; E.O. Ataro ; J. Daleiden ; S. Irmer ; A. Tarraf ; H. Hillmer
dc.date.accessioned 2019-01-16T06:14:20Z
dc.date.available 2019-01-16T06:14:20Z
dc.date.issued 2003-12-08
dc.identifier.uri http://doi.org/10.1109/JSTQE.2003.818848
dc.identifier.uri http://ir.mu.ac.ke:8080/xmlui/handle/123456789/2445
dc.description.abstract Tunable vertical cavity devices including an air-gap integrated in the cavity have been designed, fabricated, and investigated. The ultrawide wavelength tuning is realized by micromechanical actuation of Bragg mirror membranes. Based on optical and mechanical model calculations, the air-gap filters and vertical cavity surface emitting lasers (VCSELs) are designed for investigating mainly the optical tuning efficiency. In our research, we focus on two different mirror material systems, dielectric Si/sub 3/N/sub 4//SiO/sub 2/ and InP/air-gap Bragg mirrors and on two tuning concepts, respectively. For the dielectric mirrors, continuous tuning is achieved by thermal actuation of the Si/sub 3/N/sub 4//SiO/sub 2/ mirror membranes, and for InP/air-gap mirrors, electrostatic actuation of the InP membranes is used. To verify the optical and mechanical simulations, InP/air-gap filters are characterized by measuring reflectance spectra and the tuning behavior. The measured results agree with the simulations used to optimize the micromechanical and optical characteristics of air-gap filters and VCSELs for optical communication applications. en_US
dc.language.iso en en_US
dc.publisher IEEE en_US
dc.relation.ispartofseries Volume: 9 , Issue: 3;
dc.subject Air gaps en_US
dc.subject Vertical cavity surface emitting lasers en_US
dc.subject Optical filters en_US
dc.subject Mirrors en_US
dc.subject Optical tuning en_US
dc.title Modeling of ultrawidely tunable vertical cavity air-gap filters and VCSELs en_US
dc.type Article en_US


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