Title :
Metal nanolens transforming far-field into far-field
Author :
Wrobel, Piotr ; Antosiewicz, Tomasz J. ; Pniewski, Jacek ; Szoplik, Tomasz
Author_Institution :
Fac. of Phys., Univ. of Warsaw, Warsaw, Poland
fDate :
June 28 2009-July 2 2009
Abstract :
In this communication we present technical details of performance of recently proposed silver nanolens which transforms a far-field source into a far-field focus [P. Wrobel, J. Pniewski, T.J. Antosiewicz, T. Szoplik, ldquoFocusing radially polarized light by concentrically corrugated silver film without a holerdquo Phys. Rev. Lett., in print (2009)]. The nano-lens is a free standing silver nanolayer with no hole on the optical axis and double-sided concentric corrugations. The nano-lens, when illuminated with a radially polarized Laguerre-Gauss beam, focuses light in the far-field at distances equal 1 - 3 wavelengths depending upon wavelength and its geometry. Foci of diameter equal nearly 0.4 of a wavelength are achievable. The nano-lens acts like a classical optical high-numerical aperture system. Simulations using body-of-revolution finite-difference time-domain method illustrate the idea.
Keywords :
finite difference time-domain analysis; lenses; light polarisation; nanophotonics; nanostructured materials; optical focusing; silver; Laguerre-Gauss beam; body-of-revolution finite-difference time-domain method; double-sided concentric corrugations; far-field focus; far-field source; free standing silver nanolayer; metal nanolens; optical axis; optical high-numerical aperture system; radial polarization; Corrugated surfaces; Finite difference methods; Focusing; Optical films; Optical polarization; Optical refraction; Optical surface waves; Plasmons; Silver; Time domain analysis; nanooptics; plasmonic nanolens; plasmonics; radial polarization;
Conference_Titel :
Transparent Optical Networks, 2009. ICTON '09. 11th International Conference on
Conference_Location :
Azores
Print_ISBN :
978-1-4244-4825-8
Electronic_ISBN :
978-1-4244-4827-2
DOI :
10.1109/ICTON.2009.5185069