SuperspaceSuperspace is the coordinate space of a theory exhibiting supersymmetry. In such a formulation, along with ordinary space dimensions x, y, z, ..., there are also "anticommuting" dimensions whose coordinates are labeled in Grassmann numbers rather than real numbers. The ordinary space dimensions correspond to bosonic degrees of freedom, the anticommuting dimensions to fermionic degrees of freedom. The word "superspace" was first used by John Wheeler in an unrelated sense to describe the configuration space of general relativity; for example, this usage may be seen in his 1973 textbook Gravitation.
ThéorieUne théorie (du grec theoria, « contempler, observer, examiner ») est un ensemble cohérent, si elle prétend à la scientificité, d'explications, de notions ou d'idées sur un sujet précis, pouvant inclure des lois et des hypothèses, induites par l'accumulation de faits provenant de l'observation, l'expérimentation ou, dans le cas des mathématiques, déduites d'une base axiomatique donnée : théorie des matrices, des torseurs, des probabilités.
Théorie des cordesEn physique fondamentale, la théorie des cordes est un cadre théorique dans lequel les particules ponctuelles de la physique des particules sont représentées par des objets unidimensionnels appelés cordes. La théorie décrit comment ces cordes se propagent dans l'espace et interagissent les unes avec les autres. Sur des échelles de distance supérieures à l'échelle de la corde, cette dernière ressemble à une particule ordinaire, avec ses propriétés de masse, de charge et autres, déterminées par l'état vibratoire de la corde.
Théorie de jauge supersymétriqueEn théorie quantique des champs, une théorie de jauge supersymétrique est une théorie possédant une ou plusieurs supersymétries (dans le cas de plusieurs supersymétries on parle de supersymétrie étendue) et incorporant également une symétrie de jauge tout comme les théories de jauge ordinaires non-supersymétriques. Les théories de jauge contenant toujours un ou plusieurs champs de jauge qui sont des champs de spin 1, la présence de la supersymétrie nécessite qu'un tel champ vectoriel soit accompagné d'un partenaire fermionique de spin 1/2 appelé jaugino.
Supersymmetric quantum mechanicsIn theoretical physics, supersymmetric quantum mechanics is an area of research where supersymmetry are applied to the simpler setting of plain quantum mechanics, rather than quantum field theory. Supersymmetric quantum mechanics has found applications outside of high-energy physics, such as providing new methods to solve quantum mechanical problems, providing useful extensions to the WKB approximation, and statistical mechanics.
Aether drag hypothesisIn the 19th century, the theory of the luminiferous aether as the hypothetical medium for the propagation of light waves was widely discussed. The aether hypothesis arose because physicists of that era could not conceive of light waves propagating without a physical medium in which to do so. When experiments failed to detect the hypothesized luminiferous aether, physicists conceived explanations, which preserved the hypothetical aether's existence, for the experiments' failure to detect it.
Aether theoriesIn physics, aether theories (also known as ether theories) propose the existence of a medium, a space-filling substance or field as a transmission medium for the propagation of electromagnetic or gravitational forces. "Since the development of special relativity, theories using a substantial aether fell out of use in modern physics, and are now replaced by more abstract models." This early modern aether has little in common with the aether of classical elements from which the name was borrowed.
A History of the Theories of Aether and ElectricityA History of the Theories of Aether and Electricity is any of three books written by British mathematician Sir Edmund Taylor Whittaker FRS FRSE on the history of electromagnetic theory, covering the development of classical electromagnetism, optics, and aether theories. The book's first edition, subtitled from the Age of Descartes to the Close of the Nineteenth Century, was published in 1910 by Longmans, Green. The book covers the history of aether theories and the development of electromagnetic theory up to the 20th century.
Phenomenology (physics)In physics, phenomenology is the application of theoretical physics to experimental data by making quantitative predictions based upon known theories. It is related to the philosophical notion of the same name in that these predictions describe anticipated behaviors for the phenomena in reality. Phenomenology stands in contrast with experimentation in the scientific method, in which the goal of the experiment is to test a scientific hypothesis instead of making predictions.
Fermionic fieldIn quantum field theory, a fermionic field is a quantum field whose quanta are fermions; that is, they obey Fermi–Dirac statistics. Fermionic fields obey canonical anticommutation relations rather than the canonical commutation relations of bosonic fields. The most prominent example of a fermionic field is the Dirac field, which describes fermions with spin-1/2: electrons, protons, quarks, etc. The Dirac field can be described as either a 4-component spinor or as a pair of 2-component Weyl spinors.