Active-pixel sensorAn active-pixel sensor (APS) is an , which was invented by Peter J.W. Noble in 1968, where each pixel sensor unit cell has a photodetector (typically a pinned photodiode) and one or more active transistors. In a metal–oxide–semiconductor (MOS) active-pixel sensor, MOS field-effect transistors (MOSFETs) are used as amplifiers. There are different types of APS, including the early NMOS APS and the now much more common complementary MOS (CMOS) APS, also known as the CMOS sensor.
Diode laser à cavité verticale émettant par la surfacethumb|350px|right|Schéma d'une structure VCSEL simple Une diode laser à cavité verticale émettant par la surface, ou VCSEL [v'ɪxl] (pour l'anglais vertical-cavity surface-emitting laser) est un type de diode laser à semi-conducteur émettant un rayon laser perpendiculairement à la surface, contrairement aux lasers conventionnels à semi-conducteur émettant par la tranche.
Optical heterodyne detectionOptical heterodyne detection is a method of extracting information encoded as modulation of the phase, frequency or both of electromagnetic radiation in the wavelength band of visible or infrared light. The light signal is compared with standard or reference light from a "local oscillator" (LO) that would have a fixed offset in frequency and phase from the signal if the latter carried null information. "Heterodyne" signifies more than one frequency, in contrast to the single frequency employed in homodyne detection.
Laser absorption spectrometryLaser absorption spectrometry (LAS) refers to techniques that use lasers to assess the concentration or amount of a species in gas phase by absorption spectrometry (AS). Optical spectroscopic techniques in general, and laser-based techniques in particular, have a great potential for detection and monitoring of constituents in gas phase. They combine a number of important properties, e.g. a high sensitivity and a high selectivity with non-intrusive and remote sensing capabilities.
Silicon photonicsSilicon photonics is the study and application of photonic systems which use silicon as an optical medium. The silicon is usually patterned with sub-micrometre precision, into microphotonic components. These operate in the infrared, most commonly at the 1.55 micrometre wavelength used by most fiber optic telecommunication systems. The silicon typically lies on top of a layer of silica in what (by analogy with a similar construction in microelectronics) is known as silicon on insulator (SOI).
Langage contextuelEn informatique théorique, et spécialement en théorie des langages, un langage contextuel (en anglais context-sensitive language) est un langage formel engendré par une grammaire contextuelle. C'est un langage de type 1 dans la hiérarchie de Chomsky. Les langages contextuels sont les langages reconnus par les automates linéairement bornés, c'est-à-dire les machines de Turing dont la mémoire de travail est linéairement bornée en fonction de la taille de l'entrée.
Shutter lagIn photography, shutter lag is the delay between triggering the shutter and when the photograph is actually recorded. This is a common problem in the photography of fast-moving objects or animals and people in motion. The term narrowly refers only to shutter effects, but more broadly refers to all lag between when the shutter button is pressed and when the photo is taken, including metering and focus lag. In film cameras, the delay is caused by the mechanism inside the camera that opens the shutter, exposing the film.
Grammaire contextuelleUne grammaire contextuelle est une grammaire formelle dans laquelle les substitutions d'un symbole non terminal sont soumises à la présence d'un contexte gauche et d'un contexte droit. Elles sont plus générales que les grammaires algébriques. Les langages formels engendrés par les grammaires contextuelles sont les langages contextuels. Ils sont reconnus par les automates linéairement bornés. Les grammaires contextuelles ont été décrites par Noam Chomsky. Ce sont les grammaires de type 1 dans la hiérarchie de Chomsky.