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Magnetization reversal mechanism and coercivity enhancement in three-dimensional granular Nd-Fe-B magnets studied by micromagnetic simulations
JH Lee, J Choe, S Hwang, SK Kim - Journal of Applied Physics, 2017 - pubs.aip.org
We studied the mechanism of magnetization reversals and coercivity enhancements in three-
dimensional (3D) granular Nd-Fe-B permanent magnets using finite-element micromagnetic …
dimensional (3D) granular Nd-Fe-B permanent magnets using finite-element micromagnetic …
Generalized Stoner-Wohlfarth model accurately describing the switching processes in pseudo-single ferromagnetic particles
D Cimpoesu, L Stoleriu, A Stancu - Journal of Applied Physics, 2013 - pubs.aip.org
We propose a generalized Stoner-Wohlfarth (SW) type model to describe various
experimentally observed angular dependencies of the switching field in non-single-domain …
experimentally observed angular dependencies of the switching field in non-single-domain …
Hybrid design for advanced magnetic recording media: Combining exchange-coupled composite media with coupled granular continuous media
In order to enhance the performance of advanced granular recording media and understand
the physics behind the mechanism of the reversal process, an atomistic spin-dynamics …
the physics behind the mechanism of the reversal process, an atomistic spin-dynamics …
Exchange coupling in hybrid anisotropy magnetic multilayers quantified by vector magnetometry
Hybrid anisotropy thin film heterostructures, where layers with perpendicular and in-plane
anisotropy are separated by a thin spacer, are novel materials for zero/low field spin torque …
anisotropy are separated by a thin spacer, are novel materials for zero/low field spin torque …
[HTML][HTML] The effects of tungsten concentration on crystalline structure and perpendicular magnetic anisotropy of Co-W films
SQ Yin, Y Wu, XG Xu, H Wang, JP Wang, Y Jiang - AIP Advances, 2014 - pubs.aip.org
In this study, Co-W thin films deposited by DC magnetron sputtering were demonstrated to
be perpendicular magnetic anisotropic with large magnetocrystalline anisotropy energy …
be perpendicular magnetic anisotropic with large magnetocrystalline anisotropy energy …
Magnetic characterization of perpendicular recording media
Previous chapters reported on the status of current perpendicular magnetic recording (PMR)
media and the recent advancements, as well as the possible research directions for next …
media and the recent advancements, as well as the possible research directions for next …
Modelling interfacial coupling in thin film magnetic exchange springs at finite temperature
We report a numerical study that demonstrates the interface layer between a soft and hard
magnetic phase, the exchange transition layer, is the dominant factor that influences the …
magnetic phase, the exchange transition layer, is the dominant factor that influences the …
Structural Features and Magnetic Properties of Co–W Films
VO Vas' kovskiy, MN Volochaev, AN Gorkovenko… - Physics of the Solid …, 2021 - Springer
The structure and magnetic properties of thin polycrystalline films of Co 100–x W x (0≤ x≤
30) deposited by magnetron sputtering on glass substrates are investigated including those …
30) deposited by magnetron sputtering on glass substrates are investigated including those …
Структурные особенности и магнитные свойства пленок Co-W
ВО Васьковский, МН Волочаев, АН Горьковенко… - Физика твердого …, 2021 - mathnet.ru
Исследованы структура и магнитные свойства тонких поликристаллических пленок Co
$ _ {100-x} $ W $ _ {x} $(0$\le x\le $30), осажденных методом магнетронного …
$ _ {100-x} $ W $ _ {x} $(0$\le x\le $30), осажденных методом магнетронного …
[KNYGA][B] Fabrication and characterisation of L10 ordered FePt thin films and bit patterned media
S Zygridou - 2016 - search.proquest.com
Highly ordered magnetic materials with high perpendicular magnetic anisotropy (PMA), such
as the L10 ordered FePt, and new recording technologies, such as bit patternedmedia …
as the L10 ordered FePt, and new recording technologies, such as bit patternedmedia …