Article Dans Une Revue Applied Physics Letters Année : 2009

Three-dimensional spatial resolution of the nonlinear photoemission from biofunctionalized porous silicon microcavity

Marta Martin
Vivechana Agarwal
  • Fonction : Auteur
Laszlo Zimanyi
  • Fonction : Auteur
Csilla Gergely

Résumé

Infiltration of biomacromolecules into porous silicon photonic architectures results in biofunctionalized structures with unique properties. Characterization of their optical response and performance optimization in biomacromolecular detection and biophotonic application require a combination of optical and structural studies. Nonlinear optical microscopy is applied to study porous silicon microcavities with and without infiltrated glucose oxidase. The infiltrated protein acts as an internal two-photon-excited fluorescence emitter and second harmonic generator, enabling the in-depth visualization of the porous structure. Enhanced second harmonic generation and fluorescence emission by the porous silicon structure is experimentally associated with the defect layer.

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Dates et versions

hal-00391043 , version 1 (03-06-2009)

Identifiants

Citer

Marta Martin, Gabriela Palestino, Vivechana Agarwal, Thierry Cloitre, Laszlo Zimanyi, et al.. Three-dimensional spatial resolution of the nonlinear photoemission from biofunctionalized porous silicon microcavity. Applied Physics Letters, 2009, 94 (22), pp.223313. ⟨10.1063/1.3148698⟩. ⟨hal-00391043⟩
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