AbstractThe Raman depolarization ratio is a quantity that can be easily measured experimentally and offers unique information on the Raman polarizability tensor of molecular vibrations. In Surface Enhanced Raman Scattering (SERS), molecules are near-field coupled with optical nanoantennas and their scattering properties are strongly affected by the radiation patterns of the nanoantenna. The polarization of the SERS photons is consequently modified, affecting, in a non trivial way, the measured value of the SERS depolarization ratio. In this article we elaborate a model that describes how the SERS depolarization ratio is influenced by the nanoantenna re-radiation properties, suggesting how to retrieve information on the Raman polarizability from SERS experiments.

On the SERS depolarization ratio

Foti, Antonino;D'Andrea, Cristiano;Messina, Elena;Irrera, Alessia;Fazio, Barbara;Gucciardi, Pietro G.
2015

Abstract

AbstractThe Raman depolarization ratio is a quantity that can be easily measured experimentally and offers unique information on the Raman polarizability tensor of molecular vibrations. In Surface Enhanced Raman Scattering (SERS), molecules are near-field coupled with optical nanoantennas and their scattering properties are strongly affected by the radiation patterns of the nanoantenna. The polarization of the SERS photons is consequently modified, affecting, in a non trivial way, the measured value of the SERS depolarization ratio. In this article we elaborate a model that describes how the SERS depolarization ratio is influenced by the nanoantenna re-radiation properties, suggesting how to retrieve information on the Raman polarizability from SERS experiments.
2015
Istituto per i Processi Chimico-Fisici - IPCF - Sede Messina
Istituto per lo Studio dei Materiali Nanostrutturati - ISMN
Istituto per la Microelettronica e Microsistemi - IMM - Sede Secondaria Messina
Istituto di Fisica Applicata - IFAC
SERS
Raman depolarization ratio
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/534616
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