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.
Ising critical exponentsThis article lists the critical exponents of the ferromagnetic transition in the Ising model. In statistical physics, the Ising model is the simplest system exhibiting a continuous phase transition with a scalar order parameter and symmetry. The critical exponents of the transition are universal values and characterize the singular properties of physical quantities. The ferromagnetic transition of the Ising model establishes an important universality class, which contains a variety of phase transitions as different as ferromagnetism close to the Curie point and critical opalescence of liquid near its critical point.
FerromagnétismeLe ferromagnétisme est le mécanisme fondamental par lequel certains matériaux (fer, cobalt, nickel...) sont attirés par des aimants ou forment des aimants permanents. On distingue en physique différents types de magnétismes. Le ferromagnétisme (qui inclut le ferrimagnétisme) se trouve être celui à l’origine des champs magnétiques les plus importants : c’est celui qui crée des forces suffisamment importantes pour être senties et qui est responsable du phénomène bien connu de magnétisme dans les aimants de la vie quotidienne.
Fluid solutionIn general relativity, a fluid solution is an exact solution of the Einstein field equation in which the gravitational field is produced entirely by the mass, momentum, and stress density of a fluid. In astrophysics, fluid solutions are often employed as stellar models. (It might help to think of a perfect gas as a special case of a perfect fluid.) In cosmology, fluid solutions are often used as cosmological models.
Quantum critical pointA quantum critical point is a point in the phase diagram of a material where a continuous phase transition takes place at absolute zero. A quantum critical point is typically achieved by a continuous suppression of a nonzero temperature phase transition to zero temperature by the application of a pressure, field, or through doping. Conventional phase transitions occur at nonzero temperature when the growth of random thermal fluctuations leads to a change in the physical state of a system.
Criticité auto-organiséethumb|Une image 2D du tas de sable de Bak-Tang-Wiesenfeld, le modèle original de la criticité auto-organisée.|300px La criticité auto-organisée est une propriété des systèmes dynamiques qui ont un point critique comme attracteur. Leur comportement macroscopique présente alors l'invariance d'échelle spatiale ou temporelle d'un point critique d'une transition de phase, mais sans la nécessité de calibrer les paramètres de contrôle sur une valeur précise, car le système se calibre lui-même en évoluant vers la criticité.
Dust solutionIn general relativity, a dust solution is a fluid solution, a type of exact solution of the Einstein field equation, in which the gravitational field is produced entirely by the mass, momentum, and stress density of a perfect fluid that has positive mass density but vanishing pressure. Dust solutions are an important special case of fluid solutions in general relativity. A pressureless perfect fluid can be interpreted as a model of a configuration of dust particles that locally move in concert and interact with each other only gravitationally, from which the name is derived.
Electrovacuum solutionIn general relativity, an electrovacuum solution (electrovacuum) is an exact solution of the Einstein field equation in which the only nongravitational mass–energy present is the field energy of an electromagnetic field, which must satisfy the (curved-spacetime) source-free Maxwell equations appropriate to the given geometry. For this reason, electrovacuums are sometimes called (source-free) Einstein–Maxwell solutions.
Sublimation (physique)En physique, la sublimation est le changement d'état d'un corps de l'état solide à l'état gazeux, directement (sans passer par l'état liquide). Le procédé inverse se nomme déposition ou condensation solide ou encore sublimation inverse. Tout solide stable est susceptible d'être sublimé si on le chauffe à une pression inférieure à celle de son point triple. La sublimation nécessite de fournir une énergie au corps qui la subit et est donc une transition de phase endothermique.
Transition de phasevignette|droite|Noms exclusifs des transitions de phase en thermodynamique. En physique, une transition de phase est la transformation physique d'un système d'une phase vers une autre, induite par la variation d'un paramètre de contrôle externe (température, champ magnétique...). Une telle transition se produit lorsque ce paramètre externe atteint une valeur seuil (ou valeur « critique »). La transformation traduit généralement un changement des propriétés de symétrie du système.