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Jorge Albero

Researcher at Centre national de la recherche scientifique

Publications -  50
Citations -  601

Jorge Albero is an academic researcher from Centre national de la recherche scientifique. The author has contributed to research in topics: Microlens & Interferometry. The author has an hindex of 13, co-authored 50 publications receiving 545 citations. Previous affiliations of Jorge Albero include University of Franche-Comté & Universidad Miguel Hernández de Elche.

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Fabrication of spherical microlenses by a combination of isotropic wet etching of silicon and molding techniques.

TL;DR: A novel process technology of hemispherical shaped microlenses is reported, using isotropic wet etching of silicon in an acid solution to produce the microlense molds, which demonstrate high smoothness of the surfaces, excellent repeatability of mold fabrication and good optical properties.
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Second order diffractive optical elements in a spatial light modulator with large phase dynamic range

TL;DR: In this article, the diffraction efficiency of a phase-only spatial light modulator with a large dynamic phase range was studied. But the authors used a phase only device that reached 4 π phase modulation depth for the wavelength of 454 nm.
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Liquid Crystal Devices for the Reconfigurable Generation of Optical Vortices

TL;DR: In this article, two liquid crystal devices specifically designed to dynamically generate optical vortices are presented, which can be used to generate a pseudo-radially polarized beam, by simply adding two quarter-wave plates on each side.
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A simple method for quality evaluation of micro-optical components based on 3D IPSF measurement.

TL;DR: This intuitive method based on the measurement of the 3D intensity point spread function is adapted for optimization of micro-optical components fabrication processes, especially because heavy equipments and/or data analysis are not required.
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Generalized diffractive optical elements with asymmetric harmonic response and phase control

TL;DR: A phase lookup table is determined that can be used for any situation where a first-order (blazed) diffractive element is modified to produce higher orders with desired intensity and/or phase relation.