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http://yadda.icm.edu.pl:80/baztech/element/bwmeta1.element.baztech-article-BWA2-0006-0097

Czasopismo

Opto - Electronics Review

Tytuł artykułu

Plasmon polaritons in metal nanostructures : the optoelectronic route to nanotechnology

Autorzy Salerno, M.  Krenn, R. R.  Lamprecht, B.  Schider, G.  Ditlbacher, H.  Felidj, N.  Leitner, A.  Aussenegg, F. R. 
Treść / Zawartość http://www.wat.edu.pl/review/optor/contents.htm
Warianty tytułu
Języki publikacji EN
Abstrakty
EN In the light of recent advances in subwavelength optics, the development of optical nanodevices is nowadays conceivable. Among the best candidates to act as the elementary components of such devices are nanoscale structures of noble metals. These materials are capable to sustain resonant electron oscillations (plasmons). This phenomenon gives rise to a spectrally selective optical response and a local field enhancement which can be used in the context of nano-optics. Furthermore, it allows to transduce the optical signals into electrical ones (and vice wersa). Here, we demonstrate an optical nanodevice based on plasmon resonances in gold nanostructures. The adequate metal structures were produced by electron-beam-lithography. The basic operating functions of the device, namely signal processing on the nanoscale and its interfacing on the microscale, were experimentally observed in the optical near-field by photon scanning tunneling microscopy. Furthermore, as a numerical method for validation of the near-field observations the Green's Dyadic Technique is pointed out.
Słowa kluczowe
EN surface plasmons   noble metals   nanoparticles   nanowires   photonic   optoelectronics   nanodevices  
Wydawca Wojskowa Akademia Techniczna im. Jarosława Dąbrowskiego
Czasopismo Opto - Electronics Review
Rocznik 2002
Tom Vol. 10, No. 3
Strony 217--224
Opis fizyczny Bibliogr. 29 poz
Twórcy
autor Salerno, M.
autor Krenn, R. R.
autor Lamprecht, B.
autor Schider, G.
autor Ditlbacher, H.
autor Felidj, N.
autor Leitner, A.
autor Aussenegg, F. R.
  • Institut for Experimental Physics, Karl-Franzens-University Graz and Erwin Schrodinger Institute for Nanoscale Research, 5 Universitatsplatz Str., A-8010 Graz, Austria, marco.salerno@kfunigraz.ac.at
Bibliografia
Kolekcja BazTech
Identyfikator YADDA bwmeta1.element.baztech-article-BWA2-0006-0097
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