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SPATIALLY RESOLVED POLARIMETRY USING CONVENTIONAL AND UNCONVENTIONAL POLARIZATION STATES
Guadalupe Lopez-Morales
RAFAEL ESPINOSA LUNA
Acceso Abierto
Atribución-NoComercial-SinDerivadas
Polarimetry
Refractive index
Micropolarimetry
Mueller matrix
Stokes vector
"In this thesis work, some applications of the polarimetry techniques using conventional and unconventional polarized incident light are presented. The first part of this work consists on the study of the polarization properties of light scattered by a metallic cylinder. The angularly resolved Mueller matrix is determined experimentally as well as its main polarimetric parameters, which confirm that depolarization effects are not present. In the second part, the refractive index of a dielectric sample using highly focused radially polarized light is estimated by means of the measured Brewster’s angle. The Brewster’s angle was determined by analyzing the images reflected by the sample in the optical field at the pupil plane of a high numerical aperture objective lens. Employing a high numerical aperture objective lens allows the measurement of multiple angles of incidence from 0° to 64°, around a full circle, in a single shot."
2017-02
Tesis de doctorado
Inglés
López Morales, (2017). "Spatially resolved polarimetry using conventional and unconventional polarization states". Tesis de Doctorado en Ciencias (Óptica). Centro de Investigaciones en Óptica, A.C. León, Guanajuato. 82 pp.
LUZ
Aparece en las colecciones: DOCTORADO EN CIENCIAS (ÓPTICA)

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