DocumentCode :
2943449
Title :
Ridge Waveguide for Thermally Assisted Recording - Optimization, Scaling, and Wavelength Dependence
Author :
Stipe, B.C. ; Thiele, J. ; Poon, C. ; Strand, T. ; Terris, B.
Author_Institution :
Hitachi Global Storage Technol., San Jose
fYear :
2006
fDate :
8-12 May 2006
Firstpage :
572
Lastpage :
572
Abstract :
Here, we will present FETD modeling results which optimize peak power absorption in the disk media. We have used plane-wave illumination (which can approximate the wavefront from a laser cavity or thin-film waveguide). The aperture and slider material are assumed to be quartz. We have found globally optimized ridge waveguide designs as a function of wavelength and fly-height. For optimized structures, we do find clear resonant behavior in the near field pattern although the resulting near-field "spectra" bear little resemblance to the calculated far field transmission spectra. That is, high far-field transmission does not indicate a good design for data recording. We will also present modeling results on the effects of fly-height variation for fixed design, how dielectric overcoats influence ridge waveguide efficiency, and the effects of media thickness and the presence of a heatsink. Results for various metals will be shown.
Keywords :
finite element analysis; heat sinks; quartz; ridge waveguides; thermomagnetic recording; FETD modeling; dielectric overcoats; heatsink; optimization; peak power absorption; plane-wave illumination; quartz; ridge waveguide; scaling; thermally assisted recording; wavelength dependence; Absorption; Apertures; Disk recording; Finite element methods; Laser modes; Lighting; Planar waveguides; Time domain analysis; Transistors; Waveguide lasers;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Magnetics Conference, 2006. INTERMAG 2006. IEEE International
Conference_Location :
San Diego, CA
Print_ISBN :
1-4244-1479-2
Type :
conf
DOI :
10.1109/INTMAG.2006.376296
Filename :
4262005
Link To Document :
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