0000000000287374

AUTHOR

Abdelghafour Messaadi

showing 3 related works from this author

Achromatic linear retarder with tunable retardance

2018

We present a universal design and proof-of-concept of a tunable linear retarder of uniform wavelength response in a broad spectral range. It consists of two half-wave retarders (HWR) between two quarter-wave retarders (QWRs), where the uniform retardance can be tuned continuously by simply rotating one of the HWRs. A proof-of-concept of this design is built by using commercially available Fresnel rhomb retarders that provide retardation with almost wavelength uniformity in the visible and near infrared from 450 to 1550 nm. The design is universal, since other achromatic QWRs and HWRs could also be employed. The system is experimentally demonstrated to control the state of polarization of a …

Total internal reflectionMaterials scienceFresnel rhombbusiness.industryNear-infrared spectroscopy02 engineering and technologyPhysics::Classical Physics021001 nanoscience & nanotechnologyRetarderPolarization (waves)01 natural sciencesAtomic and Molecular Physics and Opticslaw.inventionSupercontinuum010309 opticsWavelengthOpticsAchromatic lenslaw0103 physical sciences0210 nano-technologybusinessOptics Letters
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Optical System For Measuring The Spectral Retardance Function In An Extended Range

2016

Optical retarders are key elements for the control of the state of polarization of light, and their wavelength dependance is of great importance in a number of applications. We apply a well-known technique for determinig the spectral retardance by measuring the transmission spectra between crossed or parallel polarizers. But we we develop an optical system to perform this measurement in a wide spectral range covering the visible (VIS) and near infrared (NIR) spectrum in the range from 400 to 1600 nm. As a result we can measure the spectral retardance of different retarders and easily identify the kind of reterder (multiple order, zero-order, achromatic). We show results with tunable liquid-…

BirefringenceMaterials sciencebusiness.industryNear-infrared spectroscopy02 engineering and technologyPolarizerPhysics::Classical PhysicsPolarization (waves)01 natural sciencesAtomic and Molecular Physics and OpticsSpectral linelaw.invention010309 opticsWavelength020210 optoelectronics & photonicsOpticsAchromatic lenslaw0103 physical sciences0202 electrical engineering electronic engineering information engineeringSpectroscopybusiness
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Solc filters in a reflective geometry

2017

We present the realization of a bulk optics birefringent Solc filter in a reflective geometry. This geometry reduces by half the number of required retarders, ensures the same spectral retardance function in pairs of retarders, and helps to make more compact filters. The key element is a quarter-wave Fresnel rhomb located in between the set of retarders and a mirror. Two cases are considered: the first Solc filter uses multiple-order quartz retarders, and the second one uses two liquid-crystal retarders. The latter has the advantage of being tunable via an applied voltage. Experimental results show how to filter the spectral content of a supercontinuum laser.

PhysicsBirefringencebusiness.industryFresnel rhombPhysics::OpticsGeometry02 engineering and technologyFunction (mathematics)Physics::Classical PhysicsRetarder01 natural sciencesAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic MaterialsSupercontinuum010309 optics020210 optoelectronics & photonicsOpticsFilter (video)0103 physical sciences0202 electrical engineering electronic engineering information engineeringbusinessRealization (systems)VoltageJournal of Optics
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