Domaine temporelLe domaine temporel se rapporte à l'analyse de fonctions mathématiques ou de signaux physiques modélisant une variation quelconque au cours du temps. En domaine temporel, la valeur de la fonction ou du signal est connue, soit en quelques points discrets de la durée d'analyse, ou éventuellement, pour tous les nombres réels. L'oscilloscope est parmi les outils usuels permettant de visualiser les signaux physiques du domaine temporel. Domaine fréquentiel Temps (physique) Catégorie:Analyse du signal Catégorie:
Fiber-optic communicationFiber-optic communication is a method of transmitting information from one place to another by sending pulses of infrared or visible light through an optical fiber. The light is a form of carrier wave that is modulated to carry information. Fiber is preferred over electrical cabling when high bandwidth, long distance, or immunity to electromagnetic interference is required. This type of communication can transmit voice, video, and telemetry through local area networks or across long distances.
Polarization rotatorA polarization rotator is an optical device that rotates the polarization axis of a linearly polarized light beam by an angle of choice. Such devices can be based on the Faraday effect, on birefringence, or on total internal reflection. Rotators of linearly polarized light have found widespread applications in modern optics since laser beams tend to be linearly polarized and it is often necessary to rotate the original polarization to its orthogonal alternative. Faraday rotator A Faraday rotator consists of an optical material in a magnetic field.
Common-path interferometerA common-path interferometer is a class of interferometers in which the reference beam and sample beams travel along the same path. Examples include the Sagnac interferometer, Zernike phase-contrast interferometer, and the point diffraction interferometer. A common-path interferometer is generally more robust to environmental vibrations than a "double-path interferometer" such as the Michelson interferometer or the Mach–Zehnder interferometer.
Fractional Fourier transformIn mathematics, in the area of harmonic analysis, the fractional Fourier transform (FRFT) is a family of linear transformations generalizing the Fourier transform. It can be thought of as the Fourier transform to the n-th power, where n need not be an integer — thus, it can transform a function to any intermediate domain between time and frequency. Its applications range from filter design and signal analysis to phase retrieval and pattern recognition.
Fiber-optic cableA fiber-optic cable, also known as an optical-fiber cable, is an assembly similar to an electrical cable but containing one or more optical fibers that are used to carry light. The optical fiber elements are typically individually coated with plastic layers and contained in a protective tube suitable for the environment where the cable is used. Different types of cable are used for optical communication in different applications, for example long-distance telecommunication or providing a high-speed data connection between different parts of a building.
Distribution de BoltzmannEn physique statistique, la distribution de Boltzmann prédit la fonction de distribution pour le nombre fractionnaire de particules Ni / N occupant un ensemble d'états i qui ont chacun pour énergie Ei : où est la constante de Boltzmann, T est la température (postulée comme étant définie très précisément), est la dégénérescence, ou le nombre d'états d'énergie , N est le nombre total de particules : et Z(T) est appelée fonction de partition, qui peut être considérée comme égale à : D'autre part, pour un systè
Transverse modeA transverse mode of electromagnetic radiation is a particular electromagnetic field pattern of the radiation in the plane perpendicular (i.e., transverse) to the radiation's propagation direction. Transverse modes occur in radio waves and microwaves confined to a waveguide, and also in light waves in an optical fiber and in a laser's optical resonator. Transverse modes occur because of boundary conditions imposed on the wave by the waveguide.
Polarisation (optique)La polarisation est une propriété qu'ont les ondes vectorielles (ondes qui peuvent osciller selon plus d'une orientation) de présenter une répartition privilégiée de l'orientation des vibrations qui les composent. Les ondes électromagnétiques, telles que la lumière, ou les ondes gravitationnelles ont ainsi des propriétés de polarisation. Les ondes mécaniques transverses dans les solides peuvent aussi être polarisées. Cependant, les ondes longitudinales (telles que les ondes sonores) ne sont pas concernées.
Statistical mechanicsIn physics, statistical mechanics is a mathematical framework that applies statistical methods and probability theory to large assemblies of microscopic entities. It does not assume or postulate any natural laws, but explains the macroscopic behavior of nature from the behavior of such ensembles. Sometimes called statistical physics or statistical thermodynamics, its applications include many problems in the fields of physics, biology, chemistry, and neuroscience.