Diffraction de FraunhoferEn optique et électromagnétisme, la 'diffraction de Fraunhofer, encore nommée diffraction en champ lointain' ou approximation de Fraunhofer, est l'observation en champ lointain de la figure de diffraction par un objet diffractant. Cette observation peut aussi se faire dans le plan focal image d'une lentille convergente. Elle s'oppose à la diffraction de Fresnel qui décrit le même phénomène de diffraction mais en champ proche.
Paper-based microfluidicsPaper-based microfluidics are microfluidic devices that consist of a series of hydrophilic cellulose or nitrocellulose fibers that transport fluid from an inlet through the porous medium to a desired outlet or region of the device, by means of capillary action. This technology builds on the conventional lateral flow test which is capable of detecting many infectious agents and chemical contaminants. The main advantage of this is that it is largely a passively controlled device unlike more complex microfluidic devices.
Optical engineeringOptical engineering is the field of science and engineering encompassing the physical phenomena and technologies associated with the generation, transmission, manipulation, detection, and utilization of light. Optical engineers use optics to solve problems and to design and build devices that make light do something useful. They design and operate optical equipment that uses the properties of light using physics and chemistry, such as lenses, microscopes, telescopes, lasers, sensors, fiber optic communication systems and optical disc systems (e.
Chimie analytiqueLa chimie analytique est la partie de la chimie qui concerne l'analyse des produits, c'est-à-dire l'identification et la caractérisation de substances chimiques connues ou non. La substance chimique dont on cherche à déterminer les propriétés est appelée « analyte ». Ses applications vont du suivi de production (vérifier qu'une chaîne fabrique un produit conforme aux spécifications) à l'enquête policière (déterminer la nature d'une trace, la provenance d'une terre, d'une peinture).
Microscopie électronique en transmissionvignette|upright=1.5|Principe de fonctionnement du microscope électronique en transmission. vignette|Un microscope électronique en transmission (1976). La microscopie électronique en transmission (MET, ou TEM pour l'anglais transmission electron microscopy) est une technique de microscopie où un faisceau d'électrons est « transmis » à travers un échantillon très mince. Les effets d'interaction entre les électrons et l'échantillon donnent naissance à une image, dont la résolution peut atteindre 0,08 nanomètre (voire ).
Phase-contrast X-ray imagingPhase-contrast X-ray imaging or phase-sensitive X-ray imaging is a general term for different technical methods that use information concerning changes in the phase of an X-ray beam that passes through an object in order to create its images. Standard X-ray imaging techniques like radiography or computed tomography (CT) rely on a decrease of the X-ray beam's intensity (attenuation) when traversing the sample, which can be measured directly with the assistance of an X-ray detector.
Oil immersionIn light microscopy, oil immersion is a technique used to increase the resolving power of a microscope. This is achieved by immersing both the objective lens and the specimen in a transparent oil of high refractive index, thereby increasing the numerical aperture of the objective lens. Without oil, light waves reflect off the slide specimen through the glass cover slip, through the air, and into the microscope lens (see the colored figure to the right).
Diffraction from slitsDiffraction processes affecting waves are amenable to quantitative description and analysis. Such treatments are applied to a wave passing through one or more slits whose width is specified as a proportion of the wavelength. Numerical approximations may be used, including the Fresnel and Fraunhofer approximations. Because diffraction is the result of addition of all waves (of given wavelength) along all unobstructed paths, the usual procedure is to consider the contribution of an infinitesimally small neighborhood around a certain path (this contribution is usually called a wavelet) and then integrate over all paths (= add all wavelets) from the source to the detector (or given point on a screen).
Cristallographie aux rayons XLa cristallographie aux rayons X, radiocristallographie ou diffractométrie de rayons X (DRX, on utilise aussi souvent l'abréviation anglaise XRD pour X-ray diffraction) est une technique d'analyse fondée sur la diffraction des rayons X par la matière, particulièrement quand celle-ci est cristalline. La diffraction des rayons X est une diffusion élastique, c'est-à-dire sans perte d'énergie des photons (longueurs d'onde inchangées), qui donne lieu à des interférences d'autant plus marquées que la matière est ordonnée.
Low-voltage electron microscopeLow-voltage electron microscope (LVEM) is an electron microscope which operates at accelerating voltages of a few kiloelectronvolts or less. Traditional electron microscopes use accelerating voltages in the range of 10-1000 keV. Low voltage imaging in transmitted electrons is possible in many new scanning electron detector. Low cost alternative is dedicated table top low voltage transmission electron microscope.