Coherent acoustic vibrations of metal nanoshells

ORAL

Abstract

We study vibrational modes of gold nanoshells grown on dielectric core by means of time-resolved pump-probe spectroscopy. The fundamental breathing mode launched by a femtosecond pump pulse manifests itself in a pronounced time-domain modulation of the differential transmission probed at the frequency of the nanoshell surface plasmon resonance. The modulation amplitude is significantly stronger while the period is longer than in a gold nanoparticle of the same overall size. A theoretical model describing breathing mode frequency and damping for a nanoshell in a medium is developed. A distinct acoustical signature of nanoshells provides a new and efficient method for identifying these versatile nanostructures and for studying their mechanical and structural properties.

Authors

  • A.S. Kirakosyan

  • T.V. Shahbazyan

    • Jackson State University
  • C. Guillon

  • P. Langot

  • N. Del Fatti

  • F. Vallee

    • Centre de Physique Moleculaire Optique et Hertzienne CNRS and Universite Bordeaux I, France
  • T. Cardinal

  • M. Treguer

    • Institut de Chimie de la Matiere Condensee de Bordeaux CNRS and Universite Bordeaux I, France