SURFACE RESPONSE OF SPHERICAL CORE–SHELL STRUCTURED NANOPARTICLE BY OPTICALLY INDUCED ELASTIC OSCILLATIONS OF SOFT SHELL AGAINST HARD CORE
The optically induced oscillatory response of a spherical two-component, shell–core structured, nanoparticle by nodeless elastic vibrations of soft peripheral shell against hard and dynamically immobile inner core is considered. The eigenfrequencies of the even-parity, spheroidal, and odd-parity torsional vibrational modes trapped in the finite-depth shell are obtained, which are of practical interest for modal specification of individual resonances in spectra of resonant scattering of long wavelength ultrafine particles.
Year of publication: |
2009
|
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Authors: | BASTRUKOV, S. I. ; LAI, P.-Y. ; MOLODTSOVA, I. V. ; CHANG, H.-K. ; PODGAINY, D. V. |
Published in: |
Surface Review and Letters (SRL). - World Scientific Publishing Co. Pte. Ltd., ISSN 1793-6667. - Vol. 16.2009, 01, p. 5-10
|
Publisher: |
World Scientific Publishing Co. Pte. Ltd. |
Subject: | Surface acoustic resonances | elastic shear vibrations | nanoparticles |
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