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Multilevel-3D Bit Patterned Magnetic Media with 8 Signal Levels Per Nanocolumn

This letter presents an experimental study that shows that a 3(rd) physical dimension may be used to further increase information packing density in magnetic storage devices. We demonstrate the feasibility of at least quadrupling the magnetic states of magnetic-based data storage devices by recordin...

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Autores principales: Amos, Nissim, Butler, John, Lee, Beomseop, Shachar, Meir H., Hu, Bing, Tian, Yuan, Hong, Jeongmin, Garcia, Davil, Ikkawi, Rabee M., Haddon, Robert C., Litvinov, Dmitri, Khizroev, Sakhrat
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3393742/
https://www.ncbi.nlm.nih.gov/pubmed/22808105
http://dx.doi.org/10.1371/journal.pone.0040134
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author Amos, Nissim
Butler, John
Lee, Beomseop
Shachar, Meir H.
Hu, Bing
Tian, Yuan
Hong, Jeongmin
Garcia, Davil
Ikkawi, Rabee M.
Haddon, Robert C.
Litvinov, Dmitri
Khizroev, Sakhrat
author_facet Amos, Nissim
Butler, John
Lee, Beomseop
Shachar, Meir H.
Hu, Bing
Tian, Yuan
Hong, Jeongmin
Garcia, Davil
Ikkawi, Rabee M.
Haddon, Robert C.
Litvinov, Dmitri
Khizroev, Sakhrat
author_sort Amos, Nissim
collection PubMed
description This letter presents an experimental study that shows that a 3(rd) physical dimension may be used to further increase information packing density in magnetic storage devices. We demonstrate the feasibility of at least quadrupling the magnetic states of magnetic-based data storage devices by recording and reading information from nanopillars with three magnetically-decoupled layers. Magneto-optical Kerr effect microscopy and magnetic force microscopy analysis show that both continuous (thin film) and patterned triple-stack magnetic media can generate eight magnetically-stable states. This is in comparison to only two states in conventional magnetic recording. Our work further reveals that ferromagnetic interaction between magnetic layers can be reduced by combining Co/Pt and Co/Pd multilayers media. Finally, we are showing for the first time an MFM image of multilevel-3D bit patterned media with 8 discrete signal levels.
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spelling pubmed-33937422012-07-17 Multilevel-3D Bit Patterned Magnetic Media with 8 Signal Levels Per Nanocolumn Amos, Nissim Butler, John Lee, Beomseop Shachar, Meir H. Hu, Bing Tian, Yuan Hong, Jeongmin Garcia, Davil Ikkawi, Rabee M. Haddon, Robert C. Litvinov, Dmitri Khizroev, Sakhrat PLoS One Research Article This letter presents an experimental study that shows that a 3(rd) physical dimension may be used to further increase information packing density in magnetic storage devices. We demonstrate the feasibility of at least quadrupling the magnetic states of magnetic-based data storage devices by recording and reading information from nanopillars with three magnetically-decoupled layers. Magneto-optical Kerr effect microscopy and magnetic force microscopy analysis show that both continuous (thin film) and patterned triple-stack magnetic media can generate eight magnetically-stable states. This is in comparison to only two states in conventional magnetic recording. Our work further reveals that ferromagnetic interaction between magnetic layers can be reduced by combining Co/Pt and Co/Pd multilayers media. Finally, we are showing for the first time an MFM image of multilevel-3D bit patterned media with 8 discrete signal levels. Public Library of Science 2012-07-10 /pmc/articles/PMC3393742/ /pubmed/22808105 http://dx.doi.org/10.1371/journal.pone.0040134 Text en Amos et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Amos, Nissim
Butler, John
Lee, Beomseop
Shachar, Meir H.
Hu, Bing
Tian, Yuan
Hong, Jeongmin
Garcia, Davil
Ikkawi, Rabee M.
Haddon, Robert C.
Litvinov, Dmitri
Khizroev, Sakhrat
Multilevel-3D Bit Patterned Magnetic Media with 8 Signal Levels Per Nanocolumn
title Multilevel-3D Bit Patterned Magnetic Media with 8 Signal Levels Per Nanocolumn
title_full Multilevel-3D Bit Patterned Magnetic Media with 8 Signal Levels Per Nanocolumn
title_fullStr Multilevel-3D Bit Patterned Magnetic Media with 8 Signal Levels Per Nanocolumn
title_full_unstemmed Multilevel-3D Bit Patterned Magnetic Media with 8 Signal Levels Per Nanocolumn
title_short Multilevel-3D Bit Patterned Magnetic Media with 8 Signal Levels Per Nanocolumn
title_sort multilevel-3d bit patterned magnetic media with 8 signal levels per nanocolumn
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3393742/
https://www.ncbi.nlm.nih.gov/pubmed/22808105
http://dx.doi.org/10.1371/journal.pone.0040134
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