Propagating and evanescent waves associated with inhibited reflection in uniaxial crystals: Extraordinary incidence

When an extraordinary wave under inhibited reflection conditions is incident on an interface between a uniaxial crystal and an isotropic medium, the reflected extraordinary wave is evanescent and the polarization of the refracted wave changes from linear to elliptical. In the present paper it is sho...

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Publicado: 2004
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Acceso en línea:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_09500340_v51_n1_p139_Vanney
http://hdl.handle.net/20.500.12110/paper_09500340_v51_n1_p139_Vanney
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spelling paper:paper_09500340_v51_n1_p139_Vanney2023-06-08T15:54:19Z Propagating and evanescent waves associated with inhibited reflection in uniaxial crystals: Extraordinary incidence Crystals Interfaces (materials) Light polarization Light reflection Light refraction Light transmission Vectors Double internal reflection Uniaxial crystals Light propagation When an extraordinary wave under inhibited reflection conditions is incident on an interface between a uniaxial crystal and an isotropic medium, the reflected extraordinary wave is evanescent and the polarization of the refracted wave changes from linear to elliptical. In the present paper it is shown that the refracted ray undergoes a shift which is not only longitudinal (as the Goos-Hänchen effect in total reflection in isotropic interfaces) but also transversal. The structure of the evanescent reflected wave is studied and the polarization of the transmitted wave is analysed. 2004 https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_09500340_v51_n1_p139_Vanney http://hdl.handle.net/20.500.12110/paper_09500340_v51_n1_p139_Vanney
institution Universidad de Buenos Aires
institution_str I-28
repository_str R-134
collection Biblioteca Digital - Facultad de Ciencias Exactas y Naturales (UBA)
topic Crystals
Interfaces (materials)
Light polarization
Light reflection
Light refraction
Light transmission
Vectors
Double internal reflection
Uniaxial crystals
Light propagation
spellingShingle Crystals
Interfaces (materials)
Light polarization
Light reflection
Light refraction
Light transmission
Vectors
Double internal reflection
Uniaxial crystals
Light propagation
Propagating and evanescent waves associated with inhibited reflection in uniaxial crystals: Extraordinary incidence
topic_facet Crystals
Interfaces (materials)
Light polarization
Light reflection
Light refraction
Light transmission
Vectors
Double internal reflection
Uniaxial crystals
Light propagation
description When an extraordinary wave under inhibited reflection conditions is incident on an interface between a uniaxial crystal and an isotropic medium, the reflected extraordinary wave is evanescent and the polarization of the refracted wave changes from linear to elliptical. In the present paper it is shown that the refracted ray undergoes a shift which is not only longitudinal (as the Goos-Hänchen effect in total reflection in isotropic interfaces) but also transversal. The structure of the evanescent reflected wave is studied and the polarization of the transmitted wave is analysed.
title Propagating and evanescent waves associated with inhibited reflection in uniaxial crystals: Extraordinary incidence
title_short Propagating and evanescent waves associated with inhibited reflection in uniaxial crystals: Extraordinary incidence
title_full Propagating and evanescent waves associated with inhibited reflection in uniaxial crystals: Extraordinary incidence
title_fullStr Propagating and evanescent waves associated with inhibited reflection in uniaxial crystals: Extraordinary incidence
title_full_unstemmed Propagating and evanescent waves associated with inhibited reflection in uniaxial crystals: Extraordinary incidence
title_sort propagating and evanescent waves associated with inhibited reflection in uniaxial crystals: extraordinary incidence
publishDate 2004
url https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_09500340_v51_n1_p139_Vanney
http://hdl.handle.net/20.500.12110/paper_09500340_v51_n1_p139_Vanney
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