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  5. Surface Plasmon Enhanced Heating of Gold Nanoparticles: A Plasmonic Optical Switch
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Surface Plasmon Enhanced Heating of Gold Nanoparticles: A Plasmonic Optical Switch

Date Issued
May 1, 2007
Author(s)
Evans, Philip Gareth
Advisor(s)
Thomas. L. Ferrell
Additional Advisor(s)
Marianne Breinig
Thomas Callcott
Ida Lee
John Quinn
Link to full text
http://etd.utk.edu/2007/EvansPhil.pdf
Permanent URI
https://trace.tennessee.edu/handle/20.500.14382/22580
Abstract

Recent work by Lereu et al. (Appl. Phys. Lett. Vol. 86, 154101, 2005) demonstrates a method of all-optical transfer of modulation signals using surface plasmon excitation on thin gold films. Localized heating of the film, resulting from surface plasmon decay, alter the optical properties of the device. A similar optical modulation method is now presented using gold nanoparticles. Computational models are used to generate realistic values of the thermo-optical response of gold and the thermal dynamics of a hot nanoparticle-substrate device. Differential pump-probe reflectivity measurements were perferomed and demonstrate modulation frequencies of upto 10kHz, an improvement of two orders of magnitude over the thin-film device. Sample fabrication techniques using physical vapor deposition and interference lithography, and heat transport on the nanoscale are also discussed.

Disciplines
Physics
Degree
Doctor of Philosophy
Major
Physics
Embargo Date
December 1, 2011
File(s)
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EvansPhil.pdf

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6.61 MB

Format

Adobe PDF

Checksum (MD5)

d1ae49b0888993da1ec3b8f7cb049e57


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