TraînéeEn mécanique des fluides, la traînée ou trainée est la force qui s'oppose au mouvement d'un corps dans un liquide ou un gaz et agit comme un frottement. Mathématiquement, c'est la composante des efforts exercés sur le corps, dans le sens opposé à la vélocité relative du corps par rapport au fluide. En aérodynamique, c'est, avec la portance, l'une des deux grandeurs fondamentales. Le rapport entre portance et traînée s'appelle la finesse.
Anisotropie magnétiqueUne anisotropie magnétique est présente lorsque les propriétés magnétiques d'un système sont orientées selon des axes privilégiés. C'est le cas dans les matériaux ferromagnétiques, où l’aimantation suit des directions privilégiées appelées axes de facile aimantation. Dans les matériaux cristallins, il existe des directions selon lesquelles il est facile d'aimanter le cristal (axes faciles), et des directions de difficile aimantation, on parle d'anisotropie magnéto-cristalline.
Particle identificationParticle identification is the process of using information left by a particle passing through a particle detector to identify the type of particle. Particle identification reduces backgrounds and improves measurement resolutions, and is essential to many analyses at particle detectors. Charged particles have been identified using a variety of techniques. All methods rely on a measurement of the momentum in a tracking chamber combined with a measurement of the velocity to determine the charged particle mass, and therefore its identity.
High dynamic rangeHigh dynamic range (HDR) is a dynamic range higher than usual, synonyms are wide dynamic range, extended dynamic range, expanded dynamic range. The term is often used in discussing the dynamic range of various signals such as s, videos, audio or radio. It may apply to the means of recording, processing, and reproducing such signals including analog and digitized signals. The term is also the name of some of the technologies or techniques allowing to achieve high dynamic range images, videos, or audio.
Angular momentum of lightThe angular momentum of light is a vector quantity that expresses the amount of dynamical rotation present in the electromagnetic field of the light. While traveling approximately in a straight line, a beam of light can also be rotating (or "spinning, or "twisting) around its own axis. This rotation, while not visible to the naked eye, can be revealed by the interaction of the light beam with matter. There are two distinct forms of rotation of a light beam, one involving its polarization and the other its wavefront shape.
Spin angular momentum of lightThe spin angular momentum of light (SAM) is the component of angular momentum of light that is associated with the quantum spin and the rotation between the polarization degrees of freedom of the photon. Spin is the fundamental property that distinguishes the two types of elementary particles: fermions with half-integer spins and bosons with integer spins. Photons, which are the quanta of light, have been long recognized as spin-1 gauge bosons. The polarization of the light is commonly accepted as its “intrinsic” spin degree of freedom.
Hund's rule of maximum multiplicityHund's rule of maximum multiplicity is a rule based on observation of atomic spectra, which is used to predict the ground state of an atom or molecule with one or more open electronic shells. The rule states that for a given electron configuration, the lowest energy term is the one with the greatest value of spin multiplicity. This implies that if two or more orbitals of equal energy are available, electrons will occupy them singly before filling them in pairs.
Single domain (magnetic)In magnetism, single domain refers to the state of a ferromagnet (in the broader meaning of the term that includes ferrimagnetism) in which the magnetization does not vary across the magnet. A magnetic particle that stays in a single domain state for all magnetic fields is called a single domain particle (but other definitions are possible; see below). Such particles are very small (generally below a micrometre in diameter). They are also very important in a lot of applications because they have a high coercivity.
Optical vortexAn optical vortex (also known as a photonic quantum vortex, screw dislocation or phase singularity) is a zero of an optical field; a point of zero intensity. The term is also used to describe a beam of light that has such a zero in it. The study of these phenomena is known as singular optics. In an optical vortex, light is twisted like a corkscrew around its axis of travel. Because of the twisting, the light waves at the axis itself cancel each other out.
Gamme dynamiqueLa gamme dynamique, ou plage dynamique ou simplement dynamique est le rapport de la plus grande à la plus petite valeur d'une grandeur. Cette grandeur peut caractériser l'intensité d'un son ou d'une lumière. Elle est mesurée par une valeur logarithmique en base 10 (décibels) ou en base 2 (bits ou « diaphs »). En photographie, le terme décrit le rapport entre l'intensité lumineuse la plus élevée et l'intensité la plus faible qu'un appareil photographique peut capturer.