(redirected from Anti-Ferromagnetic)
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References in periodicals archive ?
Examples of such organization are the ferromagnetic and anti-ferromagnetic phases in electronic (spin-1/2) systems: the former is characterized by the parallel alignment of adjacent electron spins in a lattice, while the latter exhibits an antiparallel arrangement of the spins.
It was an enormous challenge to identify just the right anti-ferromagnetic materials and then to determine which components would be produced from those materials," says Omega president Stephen Urquhart.
The magnetic measurements revealed that when the slabs containing four or more copper-oxide layers, showed anti-ferromagnetic ordering - just like thick, bulk crystals of the same materials.
While the magnetic moments, or spins, were still present and had about the same magnitude, there was no long-range static anti-ferromagnetic order, not even on the scale of a few nanometers.
Materials scientists from many countries report their own research or review the literature on such matters as fabrication and surface modification of porous nickel-titanium shape memory alloy for bone grafts, interaction between Martensitic transformations and defects during thermal and pseudoelastic cycling in cualni single crystals, the shape memory effect in anti-ferromagnetic alloys, the dependence of transformation temperatures of shape memory alloys on the number and concentration of valence electrons, and the micromechanical modeling of shape memory alloy composites.
This is reportedly achieved by using an anti-ferromagnetic media instead of an aluminium one.
It is used as a measure of the canted anti-ferromagnetic minerals haematite and goethite (Thompson and Oldfield 1986).
The researchers did this by optimizing the ferromagnetic Co-Fe alloy and by designing the MTJs with the same anti-ferromagnetic biasing they use in their GMR disk-drive heads.
While there, he oversaw the company's transition as the first independent media supplier to provide synthetic anti-ferromagnetic disks.
Conventionally three main players were identified as being crucial i) the Mott insulating phase, ii) the anti-ferromagnetic order and iii) the superconducting (SC) phase.
Physicists and materials scientists report recent research in the three areas from such perspectives as a homotopy theory of topological defects in ferromagnetic, anti-ferromagnetic, and cyclic spinor condensates; high spin field theories and relativistic; recent advances in developing borate crystal growth; and crystal growth from pharmaceutical melts.
Common types of order, such as ferro- and anti-ferromagnetic, are characterized by spin or charge densities modulated on inter-atomic scale, therefore well studied thanks to various scattering experiments.