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Content Provider | IEEE Xplore Digital Library |
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Author | Roshchin, I.V. Chang-Peng Li Suhl, H. Batlle, X. Roy, S. Sinha, S.K. Park, S. Pynn, R. Fitzsimmons, M.R. Mejia-Lopez, J. Altbir, D. Romero, A.H. Dumas, R. Kai Liu Schuller, I.K. |
Copyright Year | 2009 |
Description | Author affiliation: Materials Department, CINVESTAV, Querétaro, Mexico (Romero, A.H.) || Physics Department, University of Michigan, MI, USA (Chang-Peng Li) || Physics Department, University of Indiana, USA (Pynn, R.) || Physics Department, University of California, Davis, California 95616, USA (Dumas, R.; Kai Liu) || Advanced Light Source, LBNL, Berkeley, CA, USA (Roy, S.) || Physics Department, Texas A&M University, College Station, TX, 77843-4242, USA (Roshchin, I.V.) || Physics Department, University of California - San Diego, La Jolla, CA 92093-0319, USA (Suhl, H.; Sinha, S.K.; Schuller, I.K.) || Los Alamos National Laboratory, Los Alamos, NM 87545, USA (Fitzsimmons, M.R.) || Departamento de Física, Universidad de Santiago de Chile (USACH), Santiago, Chile (Altbir, D.) || Departament de Fisica Fonamental, Universitat de Barcelona, 08028 Barcelona, Catalonia, Spain (Batlle, X.) || Facultad de Física, Pontificia Universidad Católica de Chile, Santiago, Chile (Mejia-Lopez, J.) || Physics Department, Pusan National University, Korea (Park, S.) |
Abstract | Presented is a quantitative study of the magnetic vortex state and the vortex core in sub-100 nm magnetic dots. Arrays of magnetic nanodots covering over 1 $cm^{2}$ are fabricated using self-assembled nanopores in anodized alumina. Transition from a vortex to a single domain state for the Fe dots is studied by magnetization measurements (SQUID, VSM, and MOKE) as a function of the dots size and magnetic field. Micromagnetic and Monte Carlo simulations confirm the experimental observations. Thermal activation and exchange bias have a large effect on the vortex nucleation field. Quantitative analysis of grazing incidence small angle neutron scattering measurements with polarization analysis, performed on 65 nm Fe dots yields the magnetization of the vortex core of 140±50 $emu/cm^{3}$ and its diameter of 19±4 nm, in agreement with the simulations results. |
Starting Page | 1028 |
Ending Page | 1029 |
File Size | 850072 |
Page Count | 2 |
File Format | |
ISBN | 9781424433858 |
DOI | 10.1109/ICEAA.2009.5297777 |
Language | English |
Publisher | Institute of Electrical and Electronics Engineers, Inc. (IEEE) |
Publisher Date | 2009-09-14 |
Publisher Place | Italy |
Access Restriction | Subscribed |
Rights Holder | Institute of Electrical and Electronics Engineers, Inc. (IEEE) |
Subject Keyword | Magnetic field measurement Self-assembly Magnetic cores Magnetization Magnetic domains Iron Nanoporous materials Magnetic analysis Performance analysis Magnets |
Content Type | Text |
Resource Type | Article |
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