Stress–strain analysisStress–strain analysis (or stress analysis) is an engineering discipline that uses many methods to determine the stresses and strains in materials and structures subjected to forces. In continuum mechanics, stress is a physical quantity that expresses the internal forces that neighboring particles of a continuous material exert on each other, while strain is the measure of the deformation of the material. In simple terms we can define stress as the force of resistance per unit area, offered by a body against deformation.
Fiber-optic communicationFiber-optic communication is a method of transmitting information from one place to another by sending pulses of infrared or visible light through an optical fiber. The light is a form of carrier wave that is modulated to carry information. Fiber is preferred over electrical cabling when high bandwidth, long distance, or immunity to electromagnetic interference is required. This type of communication can transmit voice, video, and telemetry through local area networks or across long distances.
Fibre optique plastiquevignette|Photographie d'une fibre optique plastique avec un microscope. Une fibre optique plastique (ou fibre optique polymère ; en anglais, plastic optical fiber, polymer optical fibre ou POF) est une fibre optique qui est faite de plastique. Traditionnellement, le polyméthacrylate de méthyle (acrylique ; souvent abrégé en PMMA de l'anglais poly(methyl methacrylate)) est le matériau du cœur de la fibre et les polymères fluorés sont les matériaux de gainage.
Module d'élasticitéUn module d'élasticité (ou module élastique ou module de conservation) est une grandeur intrinsèque d'un matériau, définie par le rapport d'une contrainte à la déformation élastique provoquée par cette contrainte. Les déformations étant sans dimension, les modules d'élasticité sont homogènes à une pression et leur unité SI est donc le pascal ; en pratique on utilise plutôt un multiple, le ou le . Le comportement élastique d'un matériau homogène isotrope et linéaire est caractérisé par deux modules (ou constantes) d'élasticité indépendants.
Single-mode optical fiberIn fiber-optic communication, a single-mode optical fiber (SMF), also known as fundamental- or mono-mode, is an optical fiber designed to carry only a single mode of light - the transverse mode. Modes are the possible solutions of the Helmholtz equation for waves, which is obtained by combining Maxwell's equations and the boundary conditions. These modes define the way the wave travels through space, i.e. how the wave is distributed in space. Waves can have the same mode but have different frequencies.
Laser à excimèreUn laser à excimère, parfois appelé (et de façon souvent plus appropriée) laser à exciplexe, est un type de laser ultraviolet couramment utilisé en chirurgie oculaire et en photolithographie dans l'industrie des semiconducteurs. Un excimère est un dimère qui n'est stable qu'à l'état excité et se dissocie à l'état fondamental, tandis qu'un exciplexe est un complexe qui n'est stable qu'à l'état excité et se dissocie à l'état fondamental ; un excimère est donc un cas particulier d'exciplexe.
Fiber-optic cableA fiber-optic cable, also known as an optical-fiber cable, is an assembly similar to an electrical cable but containing one or more optical fibers that are used to carry light. The optical fiber elements are typically individually coated with plastic layers and contained in a protective tube suitable for the environment where the cable is used. Different types of cable are used for optical communication in different applications, for example long-distance telecommunication or providing a high-speed data connection between different parts of a building.
Laserthumb|250px|Lasers rouges (660 & ), verts (532 & ) et bleus (445 & ). thumb|250px|Rayon laser à travers un dispositif optique. thumb|250px|Démonstration de laser hélium-néon au laboratoire Kastler-Brossel à l'Université Pierre-et-Marie-Curie. Un laser (acronyme issu de l'anglais light amplification by stimulated emission of radiation qui signifie « amplification de la lumière par émission stimulée de radiation ») est un système photonique.
Deformation (engineering)In engineering, deformation refers to the change in size or shape of an object. Displacements are the absolute change in position of a point on the object. Deflection is the relative change in external displacements on an object. Strain is the relative internal change in shape of an infinitesimally small cube of material and can be expressed as a non-dimensional change in length or angle of distortion of the cube. Strains are related to the forces acting on the cube, which are known as stress, by a stress-strain curve.
FiberFiber or fibre (British English; from fibra) is a natural or artificial substance that is significantly longer than it is wide. Fibers are often used in the manufacture of other materials. The strongest engineering materials often incorporate fibers, for example carbon fiber and ultra-high-molecular-weight polyethylene. Synthetic fibers can often be produced very cheaply and in large amounts compared to natural fibers, but for clothing natural fibers can give some benefits, such as comfort, over their synthetic counterparts.