Toroidal and poloidal coordinatesThe terms toroidal and poloidal refer to directions relative to a torus of reference. They describe a three-dimensional coordinate system in which the poloidal direction follows a small circular ring around the surface, while the toroidal direction follows a large circular ring around the torus, encircling the central void. The earliest use of these terms cited by the Oxford English Dictionary is by Walter M.
Facteur de gain d'énergie de fusion nucléairevignette| L'explosion de la bombe à hydrogène Ivy Mike. La bombe à hydrogène est le seul dispositif actuellement capable d'atteindre un facteur de gain d'énergie de fusion nettement supérieur à 1. En technologie des réacteurs à fusion nucléaire, le facteur de gain d'énergie de fusion, que l'on exprime couramment à l'aide du symbole Q, est le rapport entre la puissance de fusion produite par le réacteur et la puissance auxiliaire fournie pour maintenir le plasma en régime stationnaire.
SupraconductivitéLa supraconductivité, ou supraconduction, est un phénomène physique caractérisé par l'absence de résistance électrique et l'expulsion du champ magnétique — l'effet Meissner — à l'intérieur de certains matériaux dits supraconducteurs. La supraconductivité découverte historiquement en premier, et que l'on nomme communément supraconductivité conventionnelle, se manifeste à des températures très basses, proches du zéro absolu (). La supraconductivité permet notamment de transporter de l'électricité sans perte d'énergie.
Field-reversed configurationA field-reversed configuration (FRC) is a type of plasma device studied as a means of producing nuclear fusion. It confines a plasma on closed magnetic field lines without a central penetration. In an FRC, the plasma has the form of a self-stable torus, similar to a smoke ring. FRCs are closely related to another self-stable magnetic confinement fusion device, the spheromak. Both are considered part of the compact toroid class of fusion devices.
Aimant au néodymevignette|Aimants au néodyme sous forme de cubes. Un aimant au néodyme (aimant NdFeB) est un aimant permanent composé d'un alliage de néodyme, de fer et de bore () permettant de former un système cristallin tétragonal. Développés en 1982 par General Motors et Sumitomo Special Metals, les aimants au néodyme sont les aimants permanents les plus puissants disponibles sur le marché ainsi que les aimants aux terres rares les plus utilisés.
Superconducting wireSuperconducting wires are electrical wires made of superconductive material. When cooled below their transition temperatures, they have zero electrical resistance. Most commonly, conventional superconductors such as niobium–titanium are used, but high-temperature superconductors such as YBCO are entering the market. Superconducting wire's advantages over copper or aluminum include higher maximum current densities and zero power dissipation.
Bêta (physique des plasmas)The beta of a plasma, symbolized by β, is the ratio of the plasma pressure (p = n kB T) to the magnetic pressure (pmag = B2/2μ0). The term is commonly used in studies of the Sun and Earth's magnetic field, and in the field of fusion power designs. In the fusion power field, plasma is often confined using strong magnets. Since the temperature of the fuel scales with pressure, reactors attempt to reach the highest pressures possible. The costs of large magnets roughly scales like β1⁄2.
Unconventional superconductorUnconventional superconductors are materials that display superconductivity which does not conform to conventional BCS theory or its extensions. The superconducting properties of CeCu2Si2, a type of heavy fermion material, were reported in 1979 by Frank Steglich. For a long time it was believed that CeCu2Si2 was a singlet d-wave superconductor, but since the mid 2010s, this notion has been strongly contested. In the early eighties, many more unconventional, heavy fermion superconductors were discovered, including UBe13, UPt3 and URu2Si2.
Aimant aux terres raresLes aimants permanents faisant appel aux terres rares utilisent une grande partie de l'exploitation minière de terres rares qui sont au cœur d'une compétition économique mondiale. Les aimants permanents représentent 20 % du volume et 72 % de la valeur des différentes utilisations des terres rares en 2018. Les terres rares permettent la miniaturisation d’aimants très performants, ce qui en multiplie les applications.
Plasma stabilityThe stability of a plasma is an important consideration in the study of plasma physics. When a system containing a plasma is at equilibrium, it is possible for certain parts of the plasma to be disturbed by small perturbative forces acting on it. The stability of the system determines if the perturbations will grow, oscillate, or be damped out. In many cases, a plasma can be treated as a fluid and its stability analyzed with magnetohydrodynamics (MHD).