Scalar bosonA scalar boson is a boson whose spin equals zero. A boson is a particle whose wave function is symmetric under particle exchange and therefore follows Bose–Einstein statistics. The spin–statistics theorem implies that all bosons have an integer-valued spin. Scalar bosons are the subset of bosons with zero-valued spin. The name scalar boson arises from quantum field theory, which demands that fields of spin-zero particles transform like a scalar under Lorentz transformation (i.e. are Lorentz invariant).
Bosons W et ZIn particle physics, the W and Z bosons are vector bosons that are together known as the weak bosons or more generally as the intermediate vector bosons. These elementary particles mediate the weak interaction; the respective symbols are _W boson+, _W boson-, and _Z boson0. The _W boson+- bosons have either a positive or negative electric charge of 1 elementary charge and are each other's antiparticles. The _Z boson0 boson is electrically neutral and is its own antiparticle. The three particles each have a spin of 1.
Chromodynamique quantique sur réseauLa chromodynamique quantique sur réseau est une approche non-perturbative de la chromodynamique quantique (QCD) qui se base sur une discrétisation de l'espace-temps. C'est une théorie de jauge sur réseau formulée sur une grille ou réseau de points dans l'espace et le temps. Lorsqu'on fait tendre la taille du réseau vers l'infini et la maille du réseau vers zéro, on retrouve le continuum de la QCD. Il est difficile, voire impossible de trouver des solutions analytiques ou perturbatives de la QCD à basses énergies, de par la nature hautement non-linéaire de la force forte.
Two-dimensional conformal field theoryA two-dimensional conformal field theory is a quantum field theory on a Euclidean two-dimensional space, that is invariant under local conformal transformations. In contrast to other types of conformal field theories, two-dimensional conformal field theories have infinite-dimensional symmetry algebras. In some cases, this allows them to be solved exactly, using the conformal bootstrap method. Notable two-dimensional conformal field theories include minimal models, Liouville theory, massless free bosonic theories, Wess–Zumino–Witten models, and certain sigma models.
QCD matterQuark matter or QCD matter (quantum chromodynamic) refers to any of a number of hypothetical phases of matter whose degrees of freedom include quarks and gluons, of which the prominent example is quark-gluon plasma. Several series of conferences in 2019, 2020, and 2021 were devoted to this topic. Quarks are liberated into quark matter at extremely high temperatures and/or densities, and some of them are still only theoretical as they require conditions so extreme that they cannot be produced in any laboratory, especially not at equilibrium conditions.
Minimal Supersymmetric Standard ModelThe Minimal Supersymmetric Standard Model (MSSM) is an extension to the Standard Model that realizes supersymmetry. MSSM is the minimal supersymmetrical model as it considers only "the [minimum] number of new particle states and new interactions consistent with "Reality". Supersymmetry pairs bosons with fermions, so every Standard Model particle has a superpartner yet undiscovered. If discovered, such superparticles could be candidates for dark matter, and could provide evidence for grand unification or the viability of string theory.
Symétrie (physique)En physique la notion de symétrie, qui est intimement associée à la notion d'invariance, renvoie à la possibilité de considérer un même système physique selon plusieurs points de vue distincts en termes de description mais équivalents quant aux prédictions effectuées sur son évolution. Une théorie physique possède alors une symétrie S, si toute équation dans cette théorie décrit tout aussi correctement une particule ρ qu'une particule -ρ 'symétrique' de ρ.
Géométrie conformeEn mathématiques, la géométrie conforme est l'étude de l'ensemble des transformations préservant l'angle (conformes) sur un espace. Dans un espace réel de dimension 2, la géométrie conforme est précisément la géométrie des surfaces de Riemann. Dans des espaces de dimension supérieure à 2, la géométrie conforme peut se référer soit à l'étude des transformations conformes de ce qu'on appelle les "espaces plats" (tels que les espaces euclidiens ou les sphères), soit à l'étude des variétés conformes qui sont des variétés riemanniennes ou pseudo-riemanniennes.
Vacuum expectation valueIn quantum field theory the vacuum expectation value (also called condensate or simply VEV) of an operator is its average or expectation value in the vacuum. The vacuum expectation value of an operator O is usually denoted by One of the most widely used examples of an observable physical effect that results from the vacuum expectation value of an operator is the Casimir effect. This concept is important for working with correlation functions in quantum field theory. It is also important in spontaneous symmetry breaking.
Electroweak scaleIn particle physics, the electroweak scale, also known as the Fermi scale, is the energy scale around 246 GeV, a typical energy of processes described by the electroweak theory. The particular number 246 GeV is taken to be the vacuum expectation value of the Higgs field (where is the Fermi coupling constant). In some cases the term electroweak scale is used to refer to the temperature of electroweak symmetry breaking, 159.5±1.5 GeV In other cases, the term is used more loosely to refer to energies in a broad range around 102 - 103 GeV.