Art filmAn art film, art cinema, or arthouse film, is typically an independent film, aimed at a niche market rather than a mass market audience. It is "intended to be a serious, artistic work, often experimental and not designed for mass appeal", "made primarily for aesthetic reasons rather than commercial profit", and containing "unconventional or highly symbolic content". Film critics and film studies scholars typically define an art film as possessing "formal qualities that mark them as different from mainstream Hollywood films".
Zone axisZone axis, a term sometimes used to refer to "high-symmetry" orientations in a crystal, most generally refers to any direction referenced to the direct lattice (as distinct from the reciprocal lattice) of a crystal in three dimensions. It is therefore indexed with direct lattice indices, instead of with Miller indices. High-symmetry zone axes through a crystal lattice, in particular, often lie in the direction of tunnels through the crystal between planes of atoms.
Silicium polycristallinLe silicium polycristallin, aussi couramment appelé polysilicium ou poly-Si est une forme particulière du silicium, qui se différencie du silicium monocristallin et du silicium amorphe. Contrairement au premier (composé d'un seul cristal) et au second (n'ayant aucune ou une très faible cohérence cristallographique), le silicium polycristallin est constitué de multiples petits cristaux de tailles et de formes variées, qui lui confèrent des propriétés différentes des deux autres formes.
Super-résolutionEn traitement du signal et en , la super-résolution désigne le processus qui consiste à améliorer la résolution spatiale, c'est-à-dire le niveau de détail, d'une image ou d'un système d'acquisition. Cela regroupe des méthodes matérielles qui visent à contourner les problèmes optiques et autres difficultés physiques rencontrées lors de l'acquisition d'image, ainsi que des techniques algorithmiques qui, à partir d'une ou de plusieurs images déjà capturées, créent une image de meilleure résolution.
Structure cristallineLa structure cristalline (ou structure d'un cristal) donne l'arrangement des atomes dans un cristal. Ces atomes se répètent périodiquement dans l'espace sous l'action des opérations de symétrie du groupe d'espace et forment ainsi la structure cristalline. Cette structure est un concept fondamental pour de nombreux domaines de la science et de la technologie. Elle est complètement décrite par les paramètres de maille du cristal, son réseau de Bravais, son groupe d'espace et la position des atomes dans l'unité asymétrique la maille.
NanomatériauUn nanomatériau est un matériau (sous forme de poudre, aérosol ou quasi-gaz, suspension liquide, gel) possédant des propriétés particulières à cause de sa taille et structure nanométrique. Les nanomatériaux sont habituellement issus de la nanotechnologie, à la différence des nanoparticules qui peuvent être d'origine naturelle ou résulter de processus tels que le soudage, le fumage, le polissage. Le , la Commission européenne publie ses recommandations relatives à la définition des nanomatériaux (recommandation 2011/696/UE) : .
Crystalline siliconCrystalline silicon or (c-Si) Is the crystalline forms of silicon, either polycrystalline silicon (poly-Si, consisting of small crystals), or monocrystalline silicon (mono-Si, a continuous crystal). Crystalline silicon is the dominant semiconducting material used in photovoltaic technology for the production of solar cells. These cells are assembled into solar panels as part of a photovoltaic system to generate solar power from sunlight. In electronics, crystalline silicon is typically the monocrystalline form of silicon, and is used for producing microchips.
Quantum dot solar cellA quantum dot solar cell (QDSC) is a solar cell design that uses quantum dots as the captivating photovoltaic material. It attempts to replace bulk materials such as silicon, copper indium gallium selenide (CIGS) or cadmium telluride (CdTe). Quantum dots have bandgaps that are adjustable across a wide range of energy levels by changing their size. In bulk materials, the bandgap is fixed by the choice of material(s).
Image resolutionImage resolution is the level of detail an holds. The term applies to digital images, film images, and other types of images. "Higher resolution" means more image detail. Image resolution can be measured in various ways. Resolution quantifies how close lines can be to each other and still be visibly resolved. Resolution units can be tied to physical sizes (e.g. lines per mm, lines per inch), to the overall size of a picture (lines per picture height, also known simply as lines, TV lines, or TVL), or to angular subtense.
Film theoryFilm theory is a set of scholarly approaches within the academic discipline of film or cinema studies that began in the 1920s by questioning the formal essential attributes of motion pictures; and that now provides conceptual frameworks for understanding film's relationship to reality, the other arts, individual viewers, and society at large. Film theory is not to be confused with general film criticism, or film history, though these three disciplines interrelate.