Truly neutral particleIn particle physics, a truly neutral particle is a subatomic particle that is its own antiparticle. In other words, it remains itself under the charge conjugation, which replaces particles with their corresponding antiparticles. All charges of a truly neutral particle must be equal to zero. This requires particles to not only be electrically neutral, but also requires that all of their other charges (such as the colour charge) be neutral.
Neutral currentWeak neutral current interactions are one of the ways in which subatomic particles can interact by means of the weak force. These interactions are mediated by the Z boson. The discovery of weak neutral currents was a significant step toward the unification of electromagnetism and the weak force into the electroweak force, and led to the discovery of the W and Z bosons. The weak force is best known for its role in nuclear decay. It has very short range but (apart from gravity) is the only force to interact with neutrinos.
Neutrino stérileLe neutrino stérile est un type hypothétique de neutrino qui n'interagit via aucune des interactions fondamentales du modèle standard de la physique des particules, hormis la gravité. C'est un neutrino dextrogyre (autrement dit à chiralité droite) léger ou bien un antineutrino lévogyre qui pourrait s'ajouter au modèle standard, et prendre part aux phénomènes tels que le mélange des neutrinos. Le terme neutrino stérile est utilisé pour le distinguer du neutrino actif du modèle standard, qui dispose d'une charge pour l'interaction faible.
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.
Boson de Higgsthumb|De gauche à droite : Kibble, Guralnik, Hagen, Englert et Brout, en 2010. Le boson de Higgs ou boson BEH, est une particule élémentaire dont l'existence, postulée indépendamment en juin 1964 par François Englert et Robert Brout, par Peter Higgs, en août, et par Gerald Guralnik, Carl Richard Hagen et Thomas Kibble, permet d'expliquer la brisure de l'interaction unifiée électrofaible (EWSB, pour l'anglais ) en deux interactions par l'intermédiaire du mécanisme de Brout-Englert-Higgs-Hagen-Guralnik-Kibble et d'expliquer ainsi pourquoi certaines particules ont une masse et d'autres n'en ont pas.