Results 11 to 20 of about 968,196 (289)
Magnetic Aging, Anomalous and Hysteresis Losses [PDF]
In this study the magnetic aging effect on anomalous and hysteresis loss was investigated, as well as its effect on domain morphology. For this purpose, non-oriented fully processed electrical steel with 2.3 wt.%Si - 79 ppm C and non-oriented semi ...
Adriano Alex de Almeida +1 more
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Good high-frequency magnetic softness and thermal stability are very important for the wide application of Fe-based nanocrystalline alloys. The present work reports the influence of Mn-doping and rapid annealing on the magnetic softness, nano-structure ...
Bojun Zhang +6 more
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Enhancing Domain Wall Speed in Nanowires with Transverse Magnetic Fields [PDF]
Dynamic micromagnetic simulation studies have been completed to observe the motion of a domain wall in a magnetic nanowire in an effort to increase the field-driven domain wall speed.
Kunz, Andrew, Reiff, Sarah C.
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Magnetic Domain Structure in Ferromagnetic Kagome Metal DyMn6Sn6
Two types of magnetic domains, that is, type-I domain belt domain and type-II new stripe domain, are observed in a kagome metal DyMn6Sn6 by microscopic magneto-optic Kerr imaging technique.
Zhaohui Chen +12 more
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Magnetic Structure of Ion-Beam Imprinted Stripe Domains Determined by Neutron Scattering
We present a detailed analysis of the in-plane magnetic vector configuration in head-to-head/tail-to-tail stripe domain patterns of nominal 5 μm width.
Thomas Saerbeck +3 more
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The article concerns the rarely described magnetic domain structure of Heusler alloys in the case of a single crystal [100]-oriented Co-Ni-Ga alloy.
Andrzej M. Żak, Wlodzimierz Dudzinski
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Origin and tailoring of the antiferromagnetic domain structure in $\alpha$-Fe$_2$O$_3$ thin films unraveled by statistical analysis of dichroic spectro-microscopy (X-PEEM) images [PDF]
The magnetic microstructure and domain wall distribution of antiferromagnetic $\alpha$-Fe$_2$O$_3$ epitaxial layers is determined by statistical image analyses.
Barbier, Antoine +4 more
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Influence of thermal annealing on the morphology and magnetic domain structure of Co thin films
Centimeter scale cobalt films with various thicknesses (8 nm ∼ 100 nm) were deposited by electron beam evaporation (EBE) and then annealed in a gas mixture of Ar and H _2 at temperatures ranging from 200 °C to 500 °C. Advanced characterization techniques
Muchan Li +5 more
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The estimation of parameters for the magnetic domain (i.e. magnetic domain parameters) based on their time evolution patterns created by magnetic spins is necessary in the development of magnetic materials.
Ryo Murakami +3 more
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Domain walls in helical magnets [PDF]
The structure of domain walls determines to a large extent the properties of magnetic materials, in particular their hardness and switching behavior, it represents an essential ingredient of spintronics. Common domain walls are of Bloch and Neel types in
Li, Fuxiang +2 more
core +3 more sources

