Seismic metamaterialA seismic metamaterial, is a metamaterial that is designed to counteract the adverse effects of seismic waves on artificial structures, which exist on or near the surface of the earth. Current designs of seismic metamaterials utilize configurations of boreholes, trees or proposed underground resonators to act as a large scale material. Experiments have observed both reflections and bandgap attenuation from artificially induced seismic waves.
Mur anti-bruitUn mur anti-bruit, appelé aussi écran anti-bruit ou écran acoustique, est une structure extérieure, solide, destinée à développer un effet d'isolation phonique. Il est habituellement construit le long d'infrastructures proches d'habitations et sources de nuisances sonores telles que ; les grandes routes, voies périphériques ; les voies ferrées (TGV notamment) ; les voies autoroutières ; les infrastructures portuaires ou aéroportuaires et les sites industriels bruyants.
Isolation phoniqueOn distingue parfois l'isolation acoustique, qui vise à éviter la propagation dans l'espace ou d'un lieu à l'autre de l'ensemble des bruits, de l'isolation phonique qui s'adresse davantage à l'isolation des bruits de voix. L'insonorisation vise quant à elle à empêcher la propagation du son (par une isolation acoustique intérieure ou extérieure), mais de nombreux matériaux, dits d'« isolation thermophonique » peuvent avoir une triple fonction, à la fois acoustique, phonique et thermique (il s'agit généralement de mousse ou de panneaux de fibres).
Tunable metamaterialA tunable metamaterial is a metamaterial with a variable response to an incident electromagnetic wave. This includes remotely controlling how an incident electromagnetic wave (EM wave) interacts with a metamaterial. This translates into the capability to determine whether the EM wave is transmitted, reflected, or absorbed. In general, the lattice structure of the tunable metamaterial is adjustable in real time, making it possible to reconfigure a metamaterial device during operation.
Metamaterial cloakingMetamaterial cloaking is the usage of metamaterials in an invisibility cloak. This is accomplished by manipulating the paths traversed by light through a novel optical material. Metamaterials direct and control the propagation and transmission of specified parts of the light spectrum and demonstrate the potential to render an object seemingly invisible. Metamaterial cloaking, based on transformation optics, describes the process of shielding something from view by controlling electromagnetic radiation.
Nonlinear metamaterialA nonlinear metamaterial is an artificially constructed material that can exhibit properties not yet found in nature. Its response to electromagnetic radiation can be characterized by its permittivity and material permeability. The product of the permittivity and permeability results in the refractive index. Unlike natural materials, nonlinear metamaterials can produce a negative refractive index. These can also produce a more pronounced nonlinear response than naturally occurring materials.
Photonic metamaterialA photonic metamaterial (PM), also known as an optical metamaterial, is a type of electromagnetic metamaterial, that interacts with light, covering terahertz (THz), infrared (IR) or visible wavelengths. The materials employ a periodic, cellular structure. The subwavelength periodicity distinguishes photonic metamaterials from photonic band gap or photonic crystal structures. The cells are on a scale that is magnitudes larger than the atom, yet much smaller than the radiated wavelength, are on the order of nanometers.
DébruitageLe débruitage est une technique d'édition qui consiste à supprimer des éléments indésirables (« bruit »), afin de rendre un document, un signal (numérique ou analogique) ou un environnement plus intelligible ou plus pur. Ne pas confondre le débruitage avec la réduction de bruit. Sur le plan sonore, le débruitage consiste à réduire ou anéantir le rendu d'ondes sonores « parasites » (ou « bruit »).
Electrodynamic speaker driverAn electrodynamic speaker driver, often called simply a speaker driver when the type is implicit, is an individual transducer that converts an electrical audio signal to sound waves. While the term is sometimes used interchangeably with the term speaker (loudspeaker), it is usually applied to specialized transducers which reproduce only a portion of the audible frequency range. For high fidelity reproduction of sound, multiple loudspeakers are often mounted in the same enclosure, each reproducing a different part of the audible frequency range.
Absorption (acoustics)Acoustic absorption refers to the process by which a material, structure, or object takes in sound energy when sound waves are encountered, as opposed to reflecting the energy. Part of the absorbed energy is transformed into heat and part is transmitted through the absorbing body. The energy transformed into heat is said to have been 'lost'. When sound from a loudspeaker collides with the walls of a room part of the sound's energy is reflected, part is transmitted, and part is absorbed into the walls.