Thin films of multiferroic spinel CoCr2O4

It is expected that the tremendous growth of data storage capacity will increase in the future. Thus smaller, faster and cheaper memories are desired. A common technology for information storage is the use of hard discs, which store data in small magnetic domains with two possible states: with the m...

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Main Author: Heuver, Jeroen Aaldert
Format: Doctoral or Postdoctoral Thesis
Language:English
Published: Rijksuniversiteit Groningen 2016
Subjects:
Online Access:http://hdl.handle.net/11370/0d1d5b85-1f7d-46bf-a0b4-cd69bdd581fb
https://research.rug.nl/en/publications/thin-films-of-multiferroic-spinel-cocr2o4(0d1d5b85-1f7d-46bf-a0b4-cd69bdd581fb).html
https://pure.rug.nl/ws/files/35217332/Complete_thesis.pdf
https://pure.rug.nl/ws/files/35217334/Propositions.pdf
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spelling ftunigroningenpu:oai:pure.rug.nl:publications/0d1d5b85-1f7d-46bf-a0b4-cd69bdd581fb 2023-05-15T18:22:57+02:00 Thin films of multiferroic spinel CoCr2O4 Heuver, Jeroen Aaldert 2016 application/pdf http://hdl.handle.net/11370/0d1d5b85-1f7d-46bf-a0b4-cd69bdd581fb https://research.rug.nl/en/publications/thin-films-of-multiferroic-spinel-cocr2o4(0d1d5b85-1f7d-46bf-a0b4-cd69bdd581fb).html https://pure.rug.nl/ws/files/35217332/Complete_thesis.pdf https://pure.rug.nl/ws/files/35217334/Propositions.pdf eng eng Rijksuniversiteit Groningen info:eu-repo/semantics/openAccess Heuver , J A 2016 , ' Thin films of multiferroic spinel CoCr2O4 ' , Doctor of Philosophy , University of Groningen , [Groningen] . doctoralThesis 2016 ftunigroningenpu 2022-01-22T18:56:06Z It is expected that the tremendous growth of data storage capacity will increase in the future. Thus smaller, faster and cheaper memories are desired. A common technology for information storage is the use of hard discs, which store data in small magnetic domains with two possible states: with the magnetic north or south pole pointing upwards. The information can be “written” by orienting the domains by a magnetic field, after which the orientation is stable in time. To generate such magnetic field, a magnetoelectric coil is used. With such a coil it is difficult to make a magnetic field that is strong enough to switch the magnetic bit, but confined enough to prevent neighboring bits from switching. In addition, the electromagnet uses high currents, resulting in overheating, especially at high bit density. An alternative could be substituting common magnets by materials that present so-called magnetoelectric coupling, that is materials in which the ionic and magnetic structures are intimately coupled such that it is possible to switch the magnetization by an electric field. If these materials, in addition, display two state polar states (electrical dipoles pointing up or down) next to two stable magnetic state (so-called multiferroics), then a four-state memory is possible, allowing higher density of data storage. The synthesis of magnetoelectric multiferroic thin films is, despite of its crucial importance in spintronics and electronics, rarely reported. The growth and properties of thin films of unprecedented quality of the multiferroic material CoCr2O4 are described in this thesis. Doctoral or Postdoctoral Thesis South pole University of Groningen research database South Pole
institution Open Polar
collection University of Groningen research database
op_collection_id ftunigroningenpu
language English
description It is expected that the tremendous growth of data storage capacity will increase in the future. Thus smaller, faster and cheaper memories are desired. A common technology for information storage is the use of hard discs, which store data in small magnetic domains with two possible states: with the magnetic north or south pole pointing upwards. The information can be “written” by orienting the domains by a magnetic field, after which the orientation is stable in time. To generate such magnetic field, a magnetoelectric coil is used. With such a coil it is difficult to make a magnetic field that is strong enough to switch the magnetic bit, but confined enough to prevent neighboring bits from switching. In addition, the electromagnet uses high currents, resulting in overheating, especially at high bit density. An alternative could be substituting common magnets by materials that present so-called magnetoelectric coupling, that is materials in which the ionic and magnetic structures are intimately coupled such that it is possible to switch the magnetization by an electric field. If these materials, in addition, display two state polar states (electrical dipoles pointing up or down) next to two stable magnetic state (so-called multiferroics), then a four-state memory is possible, allowing higher density of data storage. The synthesis of magnetoelectric multiferroic thin films is, despite of its crucial importance in spintronics and electronics, rarely reported. The growth and properties of thin films of unprecedented quality of the multiferroic material CoCr2O4 are described in this thesis.
format Doctoral or Postdoctoral Thesis
author Heuver, Jeroen Aaldert
spellingShingle Heuver, Jeroen Aaldert
Thin films of multiferroic spinel CoCr2O4
author_facet Heuver, Jeroen Aaldert
author_sort Heuver, Jeroen Aaldert
title Thin films of multiferroic spinel CoCr2O4
title_short Thin films of multiferroic spinel CoCr2O4
title_full Thin films of multiferroic spinel CoCr2O4
title_fullStr Thin films of multiferroic spinel CoCr2O4
title_full_unstemmed Thin films of multiferroic spinel CoCr2O4
title_sort thin films of multiferroic spinel cocr2o4
publisher Rijksuniversiteit Groningen
publishDate 2016
url http://hdl.handle.net/11370/0d1d5b85-1f7d-46bf-a0b4-cd69bdd581fb
https://research.rug.nl/en/publications/thin-films-of-multiferroic-spinel-cocr2o4(0d1d5b85-1f7d-46bf-a0b4-cd69bdd581fb).html
https://pure.rug.nl/ws/files/35217332/Complete_thesis.pdf
https://pure.rug.nl/ws/files/35217334/Propositions.pdf
geographic South Pole
geographic_facet South Pole
genre South pole
genre_facet South pole
op_source Heuver , J A 2016 , ' Thin films of multiferroic spinel CoCr2O4 ' , Doctor of Philosophy , University of Groningen , [Groningen] .
op_rights info:eu-repo/semantics/openAccess
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