Superfocusing and Light Confinement by Surface Plasmon Excitation Through Radially Polarized Beam
Author(s) -
Fadi Baida,
Abderrahmane Belkhir
Publication year - 2009
Publication title -
plasmonics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.526
H-Index - 58
eISSN - 1557-1963
pISSN - 1557-1955
DOI - 10.1007/s11468-008-9076-9
Subject(s) - optics , plasmon , surface plasmon , excitation , materials science , surface plasmon polariton , localized surface plasmon , physics , quantum mechanics
International audienceAbstract We theoretically demonstrate the possibility of obtaining nanosources through an original schema based on the generation of the radially polarized surface plasmon mode of a cylindrical metallic tip. This mode has no cutoff radius and can propagate along the tip walls until its nanometric-sized apex. Instead of radiating from the tip end, the guided mode will give rise to a nanospotlight via the well-known antenna effect. 3D calculations demonstrate that both surface plasmon-guided mode and antenna effect are directly involved in the light confinement. Near-field optical microscopy can benefit significantly from this kind of probe because the sample does not need to be directly illuminated
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