Visualization of the Magnetic Structure of Sculpted Three-Dimensional Cobalt Nanospirals
Author(s) -
Charudatta Phatak,
Yuzi Liu,
Emine Begum Gulsoy,
Daniel Schmidt,
E. F. Schubert,
A. K. PetfordLong
Publication year - 2014
Publication title -
nano letters
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 4.853
H-Index - 488
eISSN - 1530-6992
pISSN - 1530-6984
DOI - 10.1021/nl404071u
Subject(s) - condensed matter physics , magnetic domain , magnetization , magnetocrystalline anisotropy , magnetic anisotropy , materials science , cobalt , nanostructure , anisotropy , demagnetizing field , magnetic field , nanotechnology , physics , optics , quantum mechanics , metallurgy
In this work, we report on the direct visualization of magnetic structure in sculpted three-dimensional cobalt (Co) nanospirals with a wire diameter of 20 nm and outer spiral diameter of 115 nm and on the magnetic interactions between the nanospirals, using aberration-corrected Lorentz transmission electron microscopy. By analyzing the magnetic domains in three dimensions at the nanoscale, we show that magnetic domain formation in the Co nanospirals is a result of the shape anisotropy dominating over the magnetocrystalline anisotropy of the system. We also show that the strong dipolar magnetic interactions between adjacent closely packed nanospirals leads to their magnetization directions adopting alternating directions to minimize the total magnetostatic energy of the system. Deviations from such magnetization structure can only be explained by analyzing the complex three-dimensional structure of the nanospirals. These nanostructures possess an inherent chirality due to their growth conditions and are of significant importance as nanoscale building blocks in magneto-optical devices.
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