Anisotropie magnétiqueUne anisotropie magnétique est présente lorsque les propriétés magnétiques d'un système sont orientées selon des axes privilégiés. C'est le cas dans les matériaux ferromagnétiques, où l’aimantation suit des directions privilégiées appelées axes de facile aimantation. Dans les matériaux cristallins, il existe des directions selon lesquelles il est facile d'aimanter le cristal (axes faciles), et des directions de difficile aimantation, on parle d'anisotropie magnéto-cristalline.
Magnetic domainA magnetic domain is a region within a magnetic material in which the magnetization is in a uniform direction. This means that the individual magnetic moments of the atoms are aligned with one another and they point in the same direction. When cooled below a temperature called the Curie temperature, the magnetization of a piece of ferromagnetic material spontaneously divides into many small regions called magnetic domains. The magnetization within each domain points in a uniform direction, but the magnetization of different domains may point in different directions.
Single domain (magnetic)In magnetism, single domain refers to the state of a ferromagnet (in the broader meaning of the term that includes ferrimagnetism) in which the magnetization does not vary across the magnet. A magnetic particle that stays in a single domain state for all magnetic fields is called a single domain particle (but other definitions are possible; see below). Such particles are very small (generally below a micrometre in diameter). They are also very important in a lot of applications because they have a high coercivity.
Magnetocrystalline anisotropyIn physics, a ferromagnetic material is said to have magnetocrystalline anisotropy if it takes more energy to magnetize it in certain directions than in others. These directions are usually related to the principal axes of its crystal lattice. It is a special case of magnetic anisotropy. In other words, the excess energy required to magnetize a specimen in a particular direction over that required to magnetize it along the easy direction is called crystalline anisotropy energy.
Champ coercitifEn science des matériaux, le champ coercitif d'un matériau ferromagnétique désigne l'intensité du champ magnétique qu'il est nécessaire d'appliquer à un matériau ayant initialement atteint son aimantation à saturation, pour annuler l'aimantation du matériau. Le champ coercitif est usuellement noté ou . Lorsque le champ coercitif d'un ferromagnétique est très élevé, le matériau est qualifié de dur.