Reference : Distributing the Optical Near-Field for Efficient Field-Enhancements in Nanostructures
Scientific journals : Article
Physical, chemical, mathematical & earth Sciences : Physics
http://hdl.handle.net/2268/132288
Distributing the Optical Near-Field for Efficient Field-Enhancements in Nanostructures
English
Valev, V [Katholieke Universiteit Leuven - KUL > > > >]
De Clercq, B [Universiteit Hasselt - UH > > > >]
Biris, C [University College London - UCL > > > >]
Zheng, X [Katholieke Universiteit Leuven - KUL > > > >]
Vandendriessche, S [Katholieke Universiteit Leuven - KUL > > > >]
Hojeij, M [Paul Scherrer Institute, Switzerland > > > >]
Denkova, D [Katholieke Universiteit Leuven - KUL > > > >]
Jeyaram, Y [Katholieke Universiteit Leuven - KUL > > > >]
Panoiu, N [University College London - UCL > > > >]
Ekinci, Y [Paul Scherrer Institute, Switzerland > > > >]
Silhanek, Alejandro mailto [Université de Liège - ULg > Département de physique > Physique de la matière condensée >]
Volskiy, V [Katholieke Universiteit Leuven - KUL > > > >]
Vandenbosch, G [Katholieke Universiteit Leuven - KUL > > > >]
Ameloot, M [Universiteit Hasselt - UH > > > >]
Moshchalkov, V [Katholieke Universiteit Leuven - KUL > > > >]
Verbiest, T [Katholieke Universiteit Leuven - KUL > > > >]
2012
Advanced Materials
Wiley-VCH Verlag Gmbh
24
OP208
Yes
International
0935-9648
Weinheim
Germany
[en] plasmonics
[en] Circularly polarized light imparts a sense of rotation on the electron density in ring-shaped gold nanostructures. As a consequence, the near-field enhancement becomes homogeneous on the surface of the nanostructures, thereby increasing the opportunity for interaction with molecules. This type of nanostructured samples can find a broad range of applications in chemical processes where the interaction between molecules and local field enhancements play an important role.
Researchers
http://hdl.handle.net/2268/132288

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