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.
Défaut topologiqueEn cosmologie, un défaut topologique est une configuration souvent stable de matière que certaines théories prédisent avoir été formée lors des transitions de phase de l'univers primitif. Selon la nature des brisures de symétrie, on suppose la formation de nombreux solitons au travers du mécanisme de Brout-Englert-Higgs-Hagen-Guralnik-Kibble. Les défauts topologiques les plus courants sont les monopôles magnétiques, les cordes cosmiques, les murs de domaine, les skyrmions et les textures.
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.
Topological quantum field theoryIn gauge theory and mathematical physics, a topological quantum field theory (or topological field theory or TQFT) is a quantum field theory which computes topological invariants. Although TQFTs were invented by physicists, they are also of mathematical interest, being related to, among other things, knot theory and the theory of four-manifolds in algebraic topology, and to the theory of moduli spaces in algebraic geometry. Donaldson, Jones, Witten, and Kontsevich have all won Fields Medals for mathematical work related to topological field theory.
Hystérésis magnétiqueL'hystérésis magnétique désigne le phénomène d'hystérésis observé lors de l'aimantation d'un matériau. Ainsi, lorsqu'un champ magnétique externe est appliqué à un matériau ferromagnétique tel le fer, les dipôles magnétiques atomiques s'alignent en fonction de ce dernier. Lorsque le champ est retiré, une partie de l'alignement demeure au sein du matériau. Ce dernier a été aimanté. La relation entre la force du champ (H) et l'aimantation (M) n'est pas linéaire.
Saturation (magnetic)Seen in some magnetic materials, saturation is the state reached when an increase in applied external magnetic field H cannot increase the magnetization of the material further, so the total magnetic flux density B more or less levels off. (Though, magnetization continues to increase very slowly with the field due to paramagnetism.) Saturation is a characteristic of ferromagnetic and ferrimagnetic materials, such as iron, nickel, cobalt and their alloys. Different ferromagnetic materials have different saturation levels.
Topological orderIn physics, topological order is a kind of order in the zero-temperature phase of matter (also known as quantum matter). Macroscopically, topological order is defined and described by robust ground state degeneracy and quantized non-Abelian geometric phases of degenerate ground states. Microscopically, topological orders correspond to patterns of long-range quantum entanglement. States with different topological orders (or different patterns of long range entanglements) cannot change into each other without a phase transition.
Magnetic storageMagnetic storage or magnetic recording is the storage of data on a magnetized medium. Magnetic storage uses different patterns of magnetisation in a magnetizable material to store data and is a form of non-volatile memory. The information is accessed using one or more read/write heads. Magnetic storage media, primarily hard disks, are widely used to store computer data as well as audio and video signals. In the field of computing, the term magnetic storage is preferred and in the field of audio and video production, the term magnetic recording is more commonly used.
HystérésisL'hystérésis (ou hystérèse), du grec grc (« après », « plus tard »), substantif féminin, est la propriété d'un système dont l'évolution ne suit pas le même chemin selon qu'une cause extérieure augmente ou diminue. Soit une grandeur cause notée C produisant une grandeur effet notée E. On dit qu'il y a hystérésis lorsque la courbe E = f(C) obtenue à la croissance de C ne se superpose pas avec la courbe E = f(C) obtenue à la décroissance de C.
Paroi magnétiqueDans un matériau ferromagnétique, une paroi magnétique ou paroi de domaine est une zone de transition entre deux domaines d'aimantation différentes ou domaines de Weiss. En magnétisme, on utilise le terme paroi pour décrire l'interface entre deux domaines magnétiques (ou domaines de Weiss). Chaque domaine est orienté selon un axe d'anisotropie du cristal dans lequel il est présent. La paroi de domaine marque le passage d'une zone aimantée à une autre.