DocumentCode
41288
Title
The Structure of Shingled Magnetic Recording Tracks
Author
Salo, Michael ; Olson, T. ; Galbraith, Richard ; Brockie, Richard ; Lengsfield, Byron ; Katada, Hiroyuki ; Nishida, Yoshiharu
Author_Institution
HGST, Western Digital Co., San Jose, CA, USA
Volume
50
Issue
3
fYear
2014
fDate
Mar-14
Firstpage
18
Lastpage
23
Abstract
The use of a wider writing shingled magnetic recording (SMR) head in spinstand experiments allowed different regions of the SMR track to be analyzed and described. Here, we break the track into curved, best, and trimmed areas. The curved area is written with the writer edge, which has high curvature and poor write field gradient, resulting in low resolution and high noise. The trimmed region is defined by head fields combining with disk demagnetization fields. Together these fields attack the low frequency magnets, boosting resolution, increasing noise, and generating a narrow out of phase copy of the trimmed track (the negative sliver). This is explained via measurements and modeling. We also explain the measured magnetic write width dependence on linear density based on the frequency response of the reader as well as writer and media effects. We employ linear deconvolution to extract the binary impulse responses of the SMR data track and its neighboring tracks to characterize intertrack interference. The writer and media effects, which give rise to the negative sliver observed, are shown to explain the interference behavior with linear density.
Keywords
deconvolution; demagnetisation; frequency response; interference; magnetic noise; magnetic recording; transient response; SMR head track; binary impulse response extraction; disk demagnetization field; frequency response; intertrack interference characteristics; linear deconvolution; linear density dependence; magnetic write width measurement; negative sliver; shingled magnetic recording track; spinstand experiment; write field gradient; Magnetic heads; Magnetostatics; Media; Noise; Perpendicular magnetic recording; Tracking; Shingled magnetic recording (SMR); shingled write recording (SWR);
fLanguage
English
Journal_Title
Magnetics, IEEE Transactions on
Publisher
ieee
ISSN
0018-9464
Type
jour
DOI
10.1109/TMAG.2013.2283074
Filename
6774982
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