Acceptance angle (solar concentrator)Acceptance angle is the maximum angle at which incoming sunlight can be captured by a solar concentrator. Its value depends on the concentration of the optic and the refractive index in which the receiver is immersed. Maximizing the acceptance angle of a concentrator is desirable in practical systems and it may be achieved by using nonimaging optics. For concentrators that concentrate light in two dimensions, the acceptance angle may be different in the two directions. The "acceptance angle" figure illustrates this concept.
Space-based solar powerSpace-based solar power (SBSP, SSP) is the concept of collecting solar power in outer space with solar power satellites (SPS) and distributing it to Earth. Its advantages include a higher collection of energy due to the lack of reflection and absorption by the atmosphere, the possibility of very little night, and a better ability to orient to face the sun. Space-based solar power systems convert sunlight to some other form of energy (such as microwaves) which can be transmitted through the atmosphere to receivers on the Earth's surface.
Waveguide (optics)An optical waveguide is a physical structure that guides electromagnetic waves in the optical spectrum. Common types of optical waveguides include optical fiber waveguides, transparent dielectric waveguides made of plastic and glass, liquid light guides, and liquid waveguides. Optical waveguides are used as components in integrated optical circuits or as the transmission medium in local and long-haul optical communication systems.
ApertureIn optics, an aperture is a hole or an opening through which light travels. More specifically, the aperture and focal length of an optical system determine the cone angle of the bundle of rays that come to a focus in the . An optical system typically has many openings or structures that limit the ray bundles (ray bundles are also known as pencils of light). These structures may be the edge of a lens or mirror, or a ring or other fixture that holds an optical element in place, or may be a special element such as a diaphragm placed in the optical path to limit the light admitted by the system.
RéflectanceEn photométrie, la réflectance, également nommée facteur de réflexion, est la proportion de lumière réfléchie par la surface d'un matériau. Elle est définie comme le rapport entre le flux lumineux réfléchi () et le flux lumineux incident () : Elle s'exprime généralement sous la forme d'un pourcentage. La réflectance d'une surface varie généralement en fonction de la longueur d'onde de la lumière incidente. La courbe représentant la réflectance en fonction de la longueur d'onde est appelée spectre de réflexion.
Point cardinal (optique)vignette|upright=1.25|Schéma des points focaux objet et image pour une lentille épaisse avec les plans principaux P et P' interceptant l'axe optique. EFL est l'acronyme de Effective Focal Length, la focale étant déterminée comme . La notation V est utilisée ici car on regarde dans le plan vertical. On utiliserai H dans le plan horizontal. vignette|upright=1.25|Points nodaux N et N' pour lesquels le grandissement angulaire est de 1.
Reflections of signals on conducting linesA signal travelling along an electrical transmission line will be partly, or wholly, reflected back in the opposite direction when the travelling signal encounters a discontinuity in the characteristic impedance of the line, or if the far end of the line is not terminated in its characteristic impedance. This can happen, for instance, if two lengths of dissimilar transmission lines are joined. This article is about signal reflections on electrically conducting lines.
Focalevignette|Le foyer image et la distance focale (positive) d'une lentille convergente. vignette|Le foyer image et la distance focale (négative) d'une lentille divergente. vignette|Le foyer image et la distance focale (négative) d'un miroir concave. vignette|Le foyer image et la distance focale (positive) d'un miroir convexe. La distance focale est une des caractéristiques principales d'un système optique.
Thin-film opticsThin-film optics is the branch of optics that deals with very thin structured layers of different materials. In order to exhibit thin-film optics, the thickness of the layers of material must be similar to the coherence length; for visible light it is most often observed between 200 and 1000 nm of thickness. Layers at this scale can have remarkable reflective properties due to light wave interference and the difference in refractive index between the layers, the air, and the substrate.
Ouverture numériqueL’ouverture numérique est une caractéristique d'un système optique, généralement notée O.N. (ou NA dans la littérature anglophone, pour Numerical Aperture). Elle est définie par , où n0 est l'indice de réfraction dans le milieu d'observation, et i0 est l'angle entre l'axe optique et le rayon le plus écarté de l'axe optique qui entre dans la lentille. Cet angle est appelé demi-angle d'ouverture.