Quantitative Absorption Spectroscopy of a Single Gold Nanorod
Quantitative Absorption Spectroscopy of a Single Gold Nanorod
The spectrally- and polarization-resolved absorption cross-sections of a single gold nanorod have been investigated using the spatial modulation spectroscopy technique. The ensemble of its optical features, that is, longitudinal and transverse surface plasmon resonances and interband absorption, has been quantitatively characterized. The results are compared with numerical simulations using the discrete dipole approximation and the finite element method, yielding information on the investigated nanorod size and shape
8917-8921
Muskens, Otto L.
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Bachelier, Guillaume
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Fatti, Natalia Del
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Vallée, Fabrice
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Brioude, Arnaud
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Jiang, Xuchuan
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Pileni, Marie-Paule
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21 April 2008
Muskens, Otto L.
2284101a-f9ef-4d79-8951-a6cda5bfc7f9
Bachelier, Guillaume
a2b48dec-105f-4ab6-a824-2107ce868d68
Fatti, Natalia Del
9a1946b5-6bab-4e16-961e-8cefa527b448
Vallée, Fabrice
d424c39a-0813-4ca3-81a5-c35a326dbfed
Brioude, Arnaud
009b492a-d65a-43cf-ac9b-984327985634
Jiang, Xuchuan
d6271cd5-0ca6-4301-b3fd-3f32251f1c91
Pileni, Marie-Paule
884f6037-b7aa-4dfb-a507-ae50cffca19d
Muskens, Otto L., Bachelier, Guillaume, Fatti, Natalia Del, Vallée, Fabrice, Brioude, Arnaud, Jiang, Xuchuan and Pileni, Marie-Paule
(2008)
Quantitative Absorption Spectroscopy of a Single Gold Nanorod.
The Journal of Physical Chemistry C, 112 (24), .
(doi:10.1021/jp8012865).
Abstract
The spectrally- and polarization-resolved absorption cross-sections of a single gold nanorod have been investigated using the spatial modulation spectroscopy technique. The ensemble of its optical features, that is, longitudinal and transverse surface plasmon resonances and interband absorption, has been quantitatively characterized. The results are compared with numerical simulations using the discrete dipole approximation and the finite element method, yielding information on the investigated nanorod size and shape
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Published date: 21 April 2008
Organisations:
Physics & Astronomy
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Local EPrints ID: 144339
URI: http://eprints.soton.ac.uk/id/eprint/144339
ISSN: 1932-7447
PURE UUID: f9e12832-8c01-4fa0-bc64-f02c2549ac9f
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Date deposited: 14 Apr 2010 09:28
Last modified: 14 Mar 2024 02:55
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Author:
Guillaume Bachelier
Author:
Natalia Del Fatti
Author:
Fabrice Vallée
Author:
Arnaud Brioude
Author:
Xuchuan Jiang
Author:
Marie-Paule Pileni
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