Sentence examples for magnetic ordering at from inspiring English sources

Exact(6)

Ferromagnetic materials change their magnetic ordering at a characteristic temperature Tc called the Curie temperature.

We describe the physics of ferromagnetism in the ultrathin film limit and consider, for example, the effect of magnetic anisotropies on the magnetic properties, such as magnetic ordering at finite temperature, the spin reorientation transition and spin wave excitations as well as interlayer coupling.

Yttrium manganite is one of the very few materials that combine both the ferroelectric property and also magnetic ordering at extremely cold temperatures.

However, the spin polarization of electron current is smaller than that in the previous study [7] due to the small magnetic ordering at the BNC structure.

The observed magnetic ordering at temperatures lower than 275 K can be explained by assuming that part of the Mn atoms form non-ferromagnetic compounds [29] but with different magnetic susceptibility from ZnO, and that the other part of Mn atoms participate in (1) a short range indirect exchange and (2) a double exchange mechanisms [27].

This is the reason why the behavior of the Ising model on the Cayley tree is similar to those observed on the one-dimensional chain (no magnetic ordering at finite temperatures).

Similar(54)

Bode, M. et al. Chiral magnetic order at surfaces driven by inversion asymmetry.

Magnetic investigation reveals that both N-ethylmethylammonium iron formate (EtMeAFeFe) and 2-Hydroxyethylammonium iron formate (HEAFeFe) exhibit magnetic order at 36.5 and 37.0 K, respectively.

The complex electronic and magnetic orders at the interface in multiferroic heterostructures will cause abundant physical phenomena due to the interplay among spin, charge, orbit, and lattice degrees of freedom, and various prototype devices have been achieved.

In particular, regardless of composition, the variation in the atomic order affects the martensitic transformation temperature only in those alloys in which at least one of the structural phases show magnetic order at the transformation temperature, whereas those transformations taking place between paramagnetic phases remain unaffected.

Transition metal ferrites such as CoFe2O4, possessing a large magnetostriction coefficient and high Curie temperature (Tc > 600 K), are excellent candidates for creating magnetic order at the nanoscale and provide a pathway to the fabrication of uniform particle-matrix films with optimized potential for magnetoelectric coupling.

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