Results 41 to 50 of about 2,337,909 (291)
Spin waves (SW) are low energy excitations of magnetization in magnetic materials. In the promising field of magnonics, fundamental SW modes, magnons, are accessible in magnetic nanostructure waveguides and carry information.
Liang-Juan Chang +5 more
doaj +1 more source
Correction to “Micromagnetic models of pseudo-single domain grains of magnetite near the Verwey Transition” [PDF]
Domain structures of small pseudo-single domain (PSD) magnetite near the Verwey transition (Tυ) at ≈120 K were modeled using an unconstrained three-dimensional micromagnetic algorithm.
A. R. Muxworthy +3 more
core +1 more source
Domain Walls in Gapped Graphene [PDF]
4 pgs ...
Semenoff, G. W., Semenoff, V., Zhou, Fei
openaire +3 more sources
Dynamics of chiral domain walls under applied current in cylindrical magnetic nanowires
The dynamics of two types of chiral magnetic domain walls in magnetic cylindrical nanowires under spin-polarized current are investigated by means of micromagnetic simulations. We show that Bloch point domain walls with chirality identical to that of the
J. A. Fernandez-Roldan +1 more
doaj +1 more source
Domain walls in a FRW universe [PDF]
23 pages, LaTeX, 7 figures using epsf.tex.
Boyanovsky, D. +4 more
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Domains and domain walls in multiferroics [PDF]
Abstract Multiferroics are materials combining several ferroic orders, such as ferroelectricity, ferro- (or antiferro-) magnetism, ferroelasticity and ferrotoroidicity. They are of interest both from a fundamental perspective, as they have multiple (coupled) non-linear functional responses providing a veritable myriad of correlated ...
Evans, Donald +3 more
openaire +5 more sources
Gravitational waves from Higgs domain walls
The effective potential for the Standard Model Higgs field allows two quasi-degenerate vacua; one is our vacuum at the electroweak scale, while the other is at a much higher scale.
Naoya Kitajima, Fuminobu Takahashi
doaj +1 more source
Domain boundary engineering [PDF]
We review the idea that domain boundaries, rather than domains, can carry information and act as memory devices. Domains are bulk objects; their large response to changing external fields is related to their change in volume, which implies the movement ...
Salje, E. K. H., Zhang, H. L.
core +1 more source
Domain walls are diamagnetic [PDF]
It is shown that contrary to a recent claim in the literature, the domain walls made of scalar field are diamagnetic due to presence of massless fermionic modes on the wall. The diamagnetism vanishes at high temperature. Thus the domain walls could produce no effect on a primordial magnetic field in the early universe.
openaire +2 more sources

