DocumentCode :
1242076
Title :
Evanescent light enhancement in a nanometer aperture surrounded by corrugated metal thin film for a terabyte optical disk head
Author :
Goto, Kenya ; Ono, Takahito ; Kim, Yong-Joo
Author_Institution :
Tokai Univ., Shizuoka, Japan
Volume :
41
Issue :
2
fYear :
2005
Firstpage :
1037
Lastpage :
1041
Abstract :
An ultrahigh density optical disk head which utilizes evanescent light (near-field light) had been designed to enhance the near-field optical wave for the throughput increment using the surface plasmon polariton resonance effect between the light inside the near-field optical head and nano-fabricated corrugated metal thin film. The theoretical analysis is discussed with the emphasis on the two- and three-dimensional simulation using finite difference time domain method. It is also experimentally shown that the near-field light enhancement in a waveguide of a clad covered with corrugated gold thin film was observed and that the near-field light enhancement in a waveguide without the film was not. If the corrugation pitch and the focused laser wavelength used with self-aligned microlens are designed properly, more than 20% throughput will be realized using nanometer fabricated metallic grating.
Keywords :
finite difference time-domain analysis; metallic thin films; optical disc storage; surface plasmons; corrugation pitch; evanescent light enhancement; evanescent wave; finite difference time domain method; focused laser wavelength; nanofabricated corrugated metal thin film; nanometer aperture; nanometer fabricated metallic grating; near-field light; near-field optical wave; self-aligned microlens; surface plasmon polariton resonance effect; terabyte optical disk head; ultrahigh density optical disk head; Apertures; Corrugated surfaces; Optical design; Optical films; Optical surface waves; Optical waveguides; Plasmons; Resonance; Surface waves; Throughput; Evanescent wave; nano-aperture; nano-fabrication; near-field optics; surface plasmon; terabyte optical memory;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2004.842031
Filename :
1396293
Link To Document :
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