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Size-and shape-dependent nonlinear optical response of au nanoparticles embedded in sapphire

Sánchez-Dena, O. ; Mota-Santiago, P. LU ; Tamayo-Rivera, L. ; García-Ramírez, E. V. ; Crespo-Sosa, A. ; Oliver, A. and Reyes-Esqueda, J. A. (2014) In Optical Materials Express 4(1). p.92-100
Abstract

Nonlinear optical response of Au metallic nanoparticles, synthesized and embedded in sapphire by using ion implantation, as a function of their size and shape is studied. The size of the Au NPs was varied by controlling the annealing time of the gold-irradiated sapphire in a reducing atmosphere. Their shape was changed from approximately spherical to prolate by swift heavy-ion irradiation using Si3+, obtaining an anisotropic composite consisting in deformed NPs, all oriented in the direction of the Si beam irradiation. At 532 nm and 26 ps pulses, the isotropic system shows negative nonlinear absorption increasing with size, and positive nonlinear refraction. On the other hand, prolate nanoparticles show negative (null)... (More)

Nonlinear optical response of Au metallic nanoparticles, synthesized and embedded in sapphire by using ion implantation, as a function of their size and shape is studied. The size of the Au NPs was varied by controlling the annealing time of the gold-irradiated sapphire in a reducing atmosphere. Their shape was changed from approximately spherical to prolate by swift heavy-ion irradiation using Si3+, obtaining an anisotropic composite consisting in deformed NPs, all oriented in the direction of the Si beam irradiation. At 532 nm and 26 ps pulses, the isotropic system shows negative nonlinear absorption increasing with size, and positive nonlinear refraction. On the other hand, prolate nanoparticles show negative (null) absorption and null (positive) refraction for the minor (major) axis. This kind of system also shows figures of merit and relaxing times in the order of the picoseconds, appropriate for all-optical switching applications.

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publishing date
type
Contribution to journal
publication status
published
subject
in
Optical Materials Express
volume
4
issue
1
pages
9 pages
publisher
Optical Society of America
external identifiers
  • scopus:84891820689
ISSN
2159-3930
DOI
10.1364/OME.4.000092
language
English
LU publication?
no
id
d46c8b48-7fa2-4bbc-900e-12f719bd6676
date added to LUP
2023-04-05 16:10:48
date last changed
2025-04-04 14:14:23
@article{d46c8b48-7fa2-4bbc-900e-12f719bd6676,
  abstract     = {{<p>Nonlinear optical response of Au metallic nanoparticles, synthesized and embedded in sapphire by using ion implantation, as a function of their size and shape is studied. The size of the Au NPs was varied by controlling the annealing time of the gold-irradiated sapphire in a reducing atmosphere. Their shape was changed from approximately spherical to prolate by swift heavy-ion irradiation using Si<sup>3+</sup>, obtaining an anisotropic composite consisting in deformed NPs, all oriented in the direction of the Si beam irradiation. At 532 nm and 26 ps pulses, the isotropic system shows negative nonlinear absorption increasing with size, and positive nonlinear refraction. On the other hand, prolate nanoparticles show negative (null) absorption and null (positive) refraction for the minor (major) axis. This kind of system also shows figures of merit and relaxing times in the order of the picoseconds, appropriate for all-optical switching applications.</p>}},
  author       = {{Sánchez-Dena, O. and Mota-Santiago, P. and Tamayo-Rivera, L. and García-Ramírez, E. V. and Crespo-Sosa, A. and Oliver, A. and Reyes-Esqueda, J. A.}},
  issn         = {{2159-3930}},
  language     = {{eng}},
  month        = {{01}},
  number       = {{1}},
  pages        = {{92--100}},
  publisher    = {{Optical Society of America}},
  series       = {{Optical Materials Express}},
  title        = {{Size-and shape-dependent nonlinear optical response of au nanoparticles embedded in sapphire}},
  url          = {{http://dx.doi.org/10.1364/OME.4.000092}},
  doi          = {{10.1364/OME.4.000092}},
  volume       = {{4}},
  year         = {{2014}},
}