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Optomechanic interaction in a corrugated phoxonic nanobeam cavity

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Optomechanic interaction in a corrugated phoxonic nanobeam cavity

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dc.contributor.author Oudich, Mourad es_ES
dc.contributor.author El-Jalla, Said es_ES
dc.contributor.author Pennec, Yan es_ES
dc.contributor.author Djafari-Rouhani, Bahram es_ES
dc.contributor.author Gomis Bresco, Jordi es_ES
dc.contributor.author Navarro-Urrios, Daniel es_ES
dc.contributor.author Sotomayor Torres, Clivia M. es_ES
dc.contributor.author Martínez Abietar, Alejandro José es_ES
dc.contributor.author Makhoute, Abdelkader es_ES
dc.date.accessioned 2015-06-29T10:50:04Z
dc.date.available 2015-06-29T10:50:04Z
dc.date.issued 2014-06-18
dc.identifier.issn 1098-0121
dc.identifier.uri http://hdl.handle.net/10251/52418
dc.description.abstract [EN] The interaction between phonons and photons is investigated theoretically in a phoxonic cavity inside a corrugated nanobeam waveguide presenting band gaps for both electromagnetic and elastic waves. The structure is made by drilling periodic holes on a silicon nanobeam with lateral periodic stubs and the tapered cavity is constructed by changing gradually the geometrical parameters of both the holes and stubs. We show that this kind of cavity displays localized phonons and photons inside the gaps, which can enhance their interaction and also promotes the presence of many optical confined modes with high quality factor. Using the finite-element method, we demonstrate that with appropriate design of the tapering construction, one can control the cavity modes frequency without altering significantly the quality factor of the photonic modes. By changing the tapering rates over the lattice constants, we establish the possibility of shifting the phononic cavity modes frequency to place them inside the desired gap, which enhances their confinement and increases the mechanical quality factor while keeping the strength of the optomechanic coupling high. In our calculations, we take account of both mechanisms that contribute to the acousto-optic interaction, namely photoelastic and interface motion effects. We show that in our case, these two effects can contribute additively to give high coupling strength between phononic and photonic cavity modes. The calculations of the coupling coefficient which gives the phonon-photon coupling strength give values as high as 2 MHz while photonic cavity modes display quality factor of 105 and even values up to 3.4 MHz but with smaller photonic quality factors. es_ES
dc.description.sponsorship The authors acknowledge the support of the European Commission Seventh Framework Programs (FP7) under the FET-Open project TAILPHOX N 233883. en_EN
dc.language Inglés es_ES
dc.publisher American Physical Society es_ES
dc.relation.ispartof Physical Review B es_ES
dc.rights Reserva de todos los derechos es_ES
dc.subject Optomechanics es_ES
dc.subject Phoxonic crystals es_ES
dc.subject Photonic band gap es_ES
dc.subject crystals slabs es_ES
dc.subject Periodic structures es_ES
dc.subject Acoustic phonons es_ES
dc.subject Nanocavity es_ES
dc.subject.classification TEORIA DE LA SEÑAL Y COMUNICACIONES es_ES
dc.title Optomechanic interaction in a corrugated phoxonic nanobeam cavity es_ES
dc.type Artículo es_ES
dc.identifier.doi 10.1103/PhysRevB.89.245122
dc.relation.projectID info:eu-repo/grantAgreement/EC/FP7/233883/EU/TAILoring photon-phonon interaction in silicon PHOXonic crystals/ es_ES
dc.rights.accessRights Abierto es_ES
dc.contributor.affiliation Universitat Politècnica de València. Departamento de Comunicaciones - Departament de Comunicacions es_ES
dc.contributor.affiliation Universitat Politècnica de València. Instituto Universitario de Tecnología Nanofotónica - Institut Universitari de Tecnologia Nanofotònica es_ES
dc.description.bibliographicCitation Oudich, M.; El-Jalla, S.; Pennec, Y.; Djafari-Rouhani, B.; Gomis Bresco, J.; Navarro-Urrios, D.; Sotomayor Torres, CM.... (2014). Optomechanic interaction in a corrugated phoxonic nanobeam cavity. Physical Review B. 89:245122-245130. https://doi.org/10.1103/PhysRevB.89.245122 es_ES
dc.description.accrualMethod S es_ES
dc.relation.publisherversion http://dx.doi.org/10.1103/PhysRevB.89.245122 es_ES
dc.description.upvformatpinicio 245122 es_ES
dc.description.upvformatpfin 245130 es_ES
dc.type.version info:eu-repo/semantics/publishedVersion es_ES
dc.description.volume 89 es_ES
dc.relation.senia 276403
dc.contributor.funder European Commission


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