Transparent conducting filmTransparent conducting films (TCFs) are thin films of optically transparent and electrically conductive material. They are an important component in a number of electronic devices including liquid-crystal displays, OLEDs, touchscreens and photovoltaics. While indium tin oxide (ITO) is the most widely used, alternatives include wider-spectrum transparent conductive oxides (TCOs), conductive polymers, metal grids and random metallic networks, carbon nanotubes (CNT), graphene, nanowire meshes and ultra thin metal films.
Réseau de diffractionUn réseau de diffraction est un dispositif optique composé d'une série de fentes parallèles (réseau en transmission), ou de rayures réfléchissantes (réseau en réflexion). Ces traits sont espacés de manière régulière, et l'espacement est appelé le « pas » du réseau. Si la distance entre plusieurs traits est de l'ordre de grandeur de la longueur de cohérence spatiale de la lumière incidente, le réseau permet d'obtenir des figures de diffraction particulières influencées par la répétition.
Diffraction from slitsDiffraction processes affecting waves are amenable to quantitative description and analysis. Such treatments are applied to a wave passing through one or more slits whose width is specified as a proportion of the wavelength. Numerical approximations may be used, including the Fresnel and Fraunhofer approximations. Because diffraction is the result of addition of all waves (of given wavelength) along all unobstructed paths, the usual procedure is to consider the contribution of an infinitesimally small neighborhood around a certain path (this contribution is usually called a wavelet) and then integrate over all paths (= add all wavelets) from the source to the detector (or given point on a screen).
Optical coatingAn optical coating is one or more thin layers of material deposited on an optical component such as a lens, prism or mirror, which alters the way in which the optic reflects and transmits light. These coatings have become a key technology in the field of optics. One type of optical coating is an anti-reflective coating, which reduces unwanted reflections from surfaces, and is commonly used on spectacle and camera lenses. Another type is the high-reflector coating, which can be used to produce mirrors that reflect greater than 99.
Silicium amorpheLe silicium amorphe, généralement abrégé a-Si, est la variété allotropique non cristallisée du silicium, c’est-à-dire dans lequel les atomes sont désordonnés et ne sont pas rangés de façon régulière définissant une structure cristalline. Le silicium amorphe peut être déposé en couches minces à basse température sur un grand nombre de substrats, permettant d'envisager une grande variété d'applications microélectroniques. Ce matériau semi-conducteur est couramment utilisé pour réaliser certains panneaux solaires photovoltaïques.
Filtre (optique)vignette|Filtre optique pour la photographie. En optique, un filtre est un dispositif qui laisse passer une partie du rayonnement lumineux, sans autrement affecter son cheminement. Les filtres sont utilisés en photographie, dans de nombreux instruments d'optique comme ceux utilisés en astronomie, ainsi que pour l'éclairage de scène de spectacle. On distingue trois procédés de filtrage : le filtrage par absorption transmet ou absorbe le rayonnement selon sa longueur d'onde dans le vide.
Microscope optique en champ procheLe microscope optique en champ proche (MOCP, ou SNOM pour scanning near-field optical microscope ou NSOM pour near-field scanning optical microscopy) ou microscope optique à sonde locale (MOSL) est un type de microscope à sonde locale qui permet d'imager des objets à partir de la détection des ondes évanescentes confinées au voisinage de leur surface (détection en champ proche optique). Le MOCP permet de compenser la diffraction, une des limitations de la microscopie optique.
Diffraction-limited systemIn optics, any optical instrument or system a microscope, telescope, or camera has a principal limit to its resolution due to the physics of diffraction. An optical instrument is said to be diffraction-limited if it has reached this limit of resolution performance. Other factors may affect an optical system's performance, such as lens imperfections or aberrations, but these are caused by errors in the manufacture or calculation of a lens, whereas the diffraction limit is the maximum resolution possible for a theoretically perfect, or ideal, optical system.
Solar azimuth angleThe solar azimuth angle is the azimuth (horizontal angle with respect to north) of the Sun's position. This horizontal coordinate defines the Sun's relative direction along the local horizon, whereas the solar zenith angle (or its complementary angle solar elevation) defines the Sun's apparent altitude. There are several conventions for the solar azimuth; however, it is traditionally defined as the angle between a line due south and the shadow cast by a vertical rod on Earth.
Orbital angular momentum of lightThe orbital angular momentum of light (OAM) is the component of angular momentum of a light beam that is dependent on the field spatial distribution, and not on the polarization. It can be further split into an internal and an external OAM. The internal OAM is an origin-independent angular momentum of a light beam that can be associated with a helical or twisted wavefront. The external OAM is the origin-dependent angular momentum that can be obtained as cross product of the light beam position (center of the beam) and its total linear momentum.