quarter plate - définition. Qu'est-ce que quarter plate
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Qu'est-ce (qui) est quarter plate - définition

OPTICAL DEVICE
Wave Plate; Quarter-wave plate; Half-wave plate; Lambda half plate; Quarter wave plate; Half wave plate; Lambda quarter plate; Lambda plate; Wave-plate; Mica plate; Optical compensator; Quarter-Wave Plates; Halfwave plate; Quarterwave plate; Retardation plate; Wave plate; Sensitive tint plate; Tint plate; Half-wave retarder
  • Two waves differing by a quarter-phase shift for one axis.
  • Creating circular polarization using a quarter-wave plate and a polarizing filter
  • A wave in a uniaxial crystal will separate in two components, one parallel and one perpendicular to the optic axis, that will accumulate phase at different rates. This can be used to manipulate the polarization state of the wave.
  • A wave passing through a half-wave plate

quarter plate      
¦ noun
1. Brit. a photographic plate measuring 3 1/4 . 4 1/4 inches (c.8.3 . 10.8 cm).
2. a photograph reproduced from this.
Rotermanni Quarter         
  • Aerial view of Rotermanni and the Port of Tallinn
DISTRICT IN TALLINN
Draft:Rotermanni Quarter; Rotermanni quarter
Rotermanni Quarter is an area in the downtown of Tallinn, Estonia. It is located between Tallinn Old Town, the Port of Tallinn and Viru Square.
Microplate         
  • [[Liquid handling robot]] for 96 wells
  • A commercial microplate washer
FLAT PLATE WITH MULTIPLE "WELLS" USED AS SMALL TEST TUBES
Microtiter plates; 96 well plate; Microtitre plate; Microwell plate; 96-well plate; Micro-plate; Microtiter plate
A microplate, also known as a microtiter plate (Microtiter is a registered trademark in the United States, therefore it should not be used generically without attribution), microwell plate or multiwell, is a flat plate with multiple "wells" used as small test tubes. The microplate has become a standard tool in analytical research and clinical diagnostic testing laboratories.

Wikipédia

Waveplate

A waveplate or retarder is an optical device that alters the polarization state of a light wave travelling through it. Two common types of waveplates are the half-wave plate, which shifts the polarization direction of linearly polarized light, and the quarter-wave plate, which converts linearly polarized light into circularly polarized light and vice versa. A quarter-wave plate can be used to produce elliptical polarization as well.

Waveplates are constructed out of a birefringent material (such as quartz or mica, or even plastic), for which the index of refraction is different for light linearly polarized along one or the other of two certain perpendicular crystal axes. The behavior of a waveplate (that is, whether it is a half-wave plate, a quarter-wave plate, etc.) depends on the thickness of the crystal, the wavelength of light, and the variation of the index of refraction. By appropriate choice of the relationship between these parameters, it is possible to introduce a controlled phase shift between the two polarization components of a light wave, thereby altering its polarization.

A common use of waveplates—particularly the sensitive-tint (full-wave) and quarter-wave plates—is in optical mineralogy. Addition of plates between the polarizers of a petrographic microscope makes the optical identification of minerals in thin sections of rocks easier, in particular by allowing deduction of the shape and orientation of the optical indicatrices within the visible crystal sections. This alignment can allow discrimination between minerals which otherwise appear very similar in plane polarized and cross polarized light.