articleTop 1% cited
The Feasibility of Magnetic Recording at 10 Terabits Per Square Inch on Conventional Media
IEEE Transactions on Magnetics · 2009 · Vol. 45(2) · pp. 917–923
Roger Wood✉(Hitachi Global Storage Technologies (United States))M. Williams(Hitachi Global Storage Technologies (United States))A. Kavcic(University of Hawaiʻi at Mānoa)J.J. Miles(University of Manchester)
Abstract
This paper proposes a new approach to magnetic recording based on shingled writing and two-dimensional readback and signal-processing. This approach continues the use of conventional granular media but proposes techniques such that a substantial fraction of one bit of information is stored on each grain. Theoretically, areal-densities of the order of 10 Terabits per square inch may be achievable. In this paper we examine the feasibility of this two-dimensional magnetic recording (TDMR) and identify the significant challenges that must be overcome to achieve this vision.
Cellular Automata and ApplicationsAlgorithms and Data CompressionBlind Source Separation TechniquesHeat-assisted magnetic recordingComputer scienceArea densitySquare (algebra)Patterned mediaSIGNAL (programming language)Computer hardwareGrain sizeAcousticsPhysics
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495
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References
The feasibility of magnetic recording at 1 Terabit per square inch
IEEE Transactions on Magnetics · 2000 · 500 citations
Heat-Assisted Magnetic Recording
IEEE Transactions on Magnetics · 2006 · 356 citations
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