Ordinateur optiqueUn ordinateur optique (ou ordinateur photonique) est un ordinateur numérique qui utilise des photons pour le traitement des informations, alors que les ordinateurs conventionnels utilisent des électrons. Les photons ont la particularité de ne pas créer d’interférence magnétique, de ne pas générer de chaleur et de se propager très rapidement. Les transistors optiques sont beaucoup plus rapides que les transistors électroniques. Des ordinateurs optiques pourraient être plus puissants que les ordinateurs conventionnels actuels.
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.
Metamaterial absorberA metamaterial absorber is a type of metamaterial intended to efficiently absorb electromagnetic radiation such as light. Furthermore, metamaterials are an advance in materials science. Hence, those metamaterials that are designed to be absorbers offer benefits over conventional absorbers such as further miniaturization, wider adaptability, and increased effectiveness. Intended applications for the metamaterial absorber include emitters, photodetectors, sensors, spatial light modulators, infrared camouflage, wireless communication, and use in solar photovoltaics and thermophotovoltaics.
Optique non linéaireLorsqu'un milieu matériel est mis en présence d'un champ électrique , il est susceptible de modifier ce champ en créant une polarisation . Cette réponse du matériau à l'excitation peut dépendre du champ de différentes façons. L'optique non linéaire regroupe l'ensemble des phénomènes optiques présentant une réponse non linéaire par rapport à ce champ électrique, c'est-à-dire une réponse non proportionnelle à E.
Matériau bidimensionnelUn matériau bidimensionnel, parfois appelé matériau monocouche ou matériau 2D, est un matériau constitué d'une seule couche d'atomes ou de molécules. Depuis l'isolement du graphène (une seule couche de graphite) en 2004, beaucoup de recherches ont été réalisées pour isoler d'autres matériaux bidimensionnels en raison de leurs caractéristiques inhabituelles et pour une potentielle utilisation dans des applications telles que le photovoltaïque, les semi-conducteurs et la purification de l'eau.
Negative-index metamaterialNegative-index metamaterial or negative-index material (NIM) is a metamaterial whose refractive index for an electromagnetic wave has a negative value over some frequency range. NIMs are constructed of periodic basic parts called unit cells, which are usually significantly smaller than the wavelength of the externally applied electromagnetic radiation. The unit cells of the first experimentally investigated NIMs were constructed from circuit board material, or in other words, wires and dielectrics.
Arbitrary waveform generatorAn arbitrary waveform generator (AWG) is a piece of electronic test equipment used to generate electrical waveforms. These waveforms can be either repetitive or single-shot (once only) in which case some kind of triggering source is required (internal or external). The resulting waveforms can be injected into a device under test and analyzed as they progress through it, confirming the proper operation of the device or pinpointing a fault in it. Unlike function generators, AWGs can generate any arbitrarily defined waveshape as their output.
Potential applications of graphenePotential graphene applications include lightweight, thin, and flexible electric/photonics circuits, solar cells, and various medical, chemical and industrial processes enhanced or enabled by the use of new graphene materials. In 2008, graphene produced by exfoliation was one of the most expensive materials on Earth, with a sample the area of a cross section of a human hair costing more than 1,000asofApril2008(about100,000,000/cm2). Since then, exfoliation procedures have been scaled up, and now companies sell graphene in large quantities. Three-dimensional integrated circuitA three-dimensional integrated circuit (3D IC) is a MOS (metal-oxide semiconductor) integrated circuit (IC) manufactured by stacking as many as 16 or more ICs and interconnecting them vertically using, for instance, through-silicon vias (TSVs) or Cu-Cu connections, so that they behave as a single device to achieve performance improvements at reduced power and smaller footprint than conventional two dimensional processes. The 3D IC is one of several 3D integration schemes that exploit the z-direction to achieve electrical performance benefits in microelectronics and nanoelectronics.
Crystal detectorA crystal detector is an obsolete electronic component used in some early 20th century radio receivers that consists of a piece of crystalline mineral which rectifies the alternating current radio signal. It was employed as a detector (demodulator) to extract the audio modulation signal from the modulated carrier, to produce the sound in the earphones. It was the first type of semiconductor diode, and one of the first semiconductor electronic devices.