Logo image
Absorption and related optical dispersion effects on the spectral response of a surface plasmon resonance sensor
Article de revue scientifique   Avec comité de lecture

Absorption and related optical dispersion effects on the spectral response of a surface plasmon resonance sensor

Mohamed Nakkach, Pierre Lecaruyer, Fabrice Bardin, Jaouhar Sakly, Zohra Ben Lakhdar et Michael Canva
Applied optics (2004), Vol.47(33), p.6177-6182
20/11/2008
PMID: 19023380

Résumé

Optics Physical Sciences Science & Technology
Surface plasmon resonance (SPR) sensing is an optical technique that allows real time detection of Small changes in the physical properties, in particular in the refractive index, of a dielectric medium near a metal film surface. One way to increase the SPR signal shift is then to incorporate a substance possessing a strong dispersive refractive index in the range of the plasmon resonance band. In this paper, we investigate the impact of materials possessing a strong dispersive index integrated to the dielectric medium on the SPR reflectivity profile. We present theoretical results based on chromophore absorption spectra and on their associated refractive index obtained from the Lorentz approach and Kramers-Kronig equations. As predicted by the theory, the experimental results show an enhancement of the SPR response, maximized when the chromophore absorption band coincides with the plasmon resonant wavelength. This shows that chromophores labeling can provide a potential way for SPR response enhancement. (c) 2008 Optical Society of America

Indicateurs

1 Consultations de la notice

Détails

Logo image