Modèle standard de la physique des particulesvignette|upright=2.0|Modèle standard des particules élémentaires avec les trois générations de fermions (trois premières colonnes), les bosons de jauge (quatrième colonne) et le boson de Higgs (cinquième colonne). Le modèle standard de la physique des particules est une théorie qui concerne l'électromagnétisme, les interactions nucléaires faible et forte, et la classification de toutes les particules subatomiques connues. Elle a été développée pendant la deuxième moitié du , dans une initiative collaborative mondiale, sur les bases de la mécanique quantique.
Quark modelIn particle physics, the quark model is a classification scheme for hadrons in terms of their valence quarks—the quarks and antiquarks which give rise to the quantum numbers of the hadrons. The quark model underlies "flavor SU(3)", or the Eightfold Way, the successful classification scheme organizing the large number of lighter hadrons that were being discovered starting in the 1950s and continuing through the 1960s. It received experimental verification beginning in the late 1960s and is a valid effective classification of them to date.
Particule de MajoranaEn physique des particules, une particule de Majorana ou fermion de Majorana est un fermion qui est sa propre antiparticule. Ces particules sont nommées en hommage au physicien Ettore Majorana, qui a proposé ce modèle en établissant l'équation qui porte son nom. Ce terme est parfois utilisé en opposition aux particules de Dirac (ou fermions de Dirac) qui ont une antiparticule différente d'elles-mêmes. En 1928, Paul Dirac publie l'article qui contient l'équation de Dirac.
Beta function (physics)In theoretical physics, specifically quantum field theory, a beta function, β(g), encodes the dependence of a coupling parameter, g, on the energy scale, μ, of a given physical process described by quantum field theory. It is defined as and, because of the underlying renormalization group, it has no explicit dependence on μ, so it only depends on μ implicitly through g. This dependence on the energy scale thus specified is known as the running of the coupling parameter, a fundamental feature of scale-dependence in quantum field theory, and its explicit computation is achievable through a variety of mathematical techniques.
Mathematical formulation of the Standard ModelThis article describes the mathematics of the Standard Model of particle physics, a gauge quantum field theory containing the internal symmetries of the unitary product group SU(3) × SU(2) × U(1). The theory is commonly viewed as describing the fundamental set of particles – the leptons, quarks, gauge bosons and the Higgs boson. The Standard Model is renormalizable and mathematically self-consistent, however despite having huge and continued successes in providing experimental predictions it does leave some unexplained phenomena.
Gauge fixingIn the physics of gauge theories, gauge fixing (also called choosing a gauge) denotes a mathematical procedure for coping with redundant degrees of freedom in field variables. By definition, a gauge theory represents each physically distinct configuration of the system as an equivalence class of detailed local field configurations. Any two detailed configurations in the same equivalence class are related by a gauge transformation, equivalent to a shear along unphysical axes in configuration space.
Méson êtaThe eta (_eta) and eta prime meson (_eta prime) are isosinglet mesons made of a mixture of up, down and strange quarks and their antiquarks. The charmed eta meson (_charmed eta) and bottom eta meson (_bottom eta) are similar forms of quarkonium; they have the same spin and parity as the (light) _eta defined, but are made of charm quarks and bottom quarks respectively. The top quark is too heavy to form a similar meson, due to its very fast decay. The eta was discovered in pion–nucleon collisions at the Bevatron in 1961 by Aihud Pevsner et al.
Gamutthumb|Un gamut typique d'écran cathodique. Le fer à cheval en gris représente toute la gamme des chrominances possibles. Le triangle coloré représente, dans un diagramme de chromaticité, le gamut correspondant à un certain type d'écran d'ordinateur qui ne couvre pas la totalité de l'espace colorimétrique. Les sommets de ce triangle sont (pour cet écran) les couleurs primaires additives, c'est-à-dire les trois couleurs que peut afficher un pixel donné.
Capital structureIn corporate finance, capital structure refers to the mix of various forms of external funds, known as capital, used to finance a business. It consists of shareholders' equity, debt (borrowed funds), and preferred stock, and is detailed in the company's balance sheet. The larger the debt component is in relation to the other sources of capital, the greater financial leverage (or gearing, in the United Kingdom) the firm is said to have.
Matière noirevignette|redresse=1.1|Répartition de la densité d'énergie de l'Univers après exploitation des premières données du satellite Planck. La matière noire en est une des composantes principales. La matière noire ou matière sombre, est une catégorie de matière hypothétique, invoquée dans le cadre du Modèle ΛCDM pour rendre compte de certaines observations astrophysiques, notamment les estimations de la masse des galaxies ou des amas de galaxies et les propriétés des fluctuations du fond diffus cosmologique.