Magnetic Dichroism in the Reflectivity of Linearly Polarized Synchrotron Radiation from a Ti
The dichroic effect ("rotated" polarization) in the reflectivity from a magnetically ordered sample is experimentally studied at the station PHASE of the Kurchatov Synchrotron Radiation Source. The experiments are performed for the [Gd.sub.0.23][Co.sub.0.77] film, which has a compensation...
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Veröffentlicht in: | Journal of experimental and theoretical physics 2018-06, Vol.126 (6), p.802 |
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creator | Andreeva, M. A Baulin, R. A Borisov, M. M Gan'shina, E. A Kurlyandskaya, G. V Mukhamedzhanov, E. Kh Repchenko, Yu. L Svalov, A. V |
description | The dichroic effect ("rotated" polarization) in the reflectivity from a magnetically ordered sample is experimentally studied at the station PHASE of the Kurchatov Synchrotron Radiation Source. The experiments are performed for the [Gd.sub.0.23][Co.sub.0.77] film, which has a compensation temperature [T.sub.comp] [approximately equal to] 433 K, using linearly polarized radiation of the photon energy of 7930 eV ([L.sub.2] absorption edge of gadolinium) at room temperature. The developed theory of reflectivity accounted for the magnetic contributions to the scattering amplitude predicts the appearance of a peak for the orthogonal (to the incident polarization) polarization of the reflected radiation near the critical angle of the total external reflection. The experiment reveals the significant difficulties because of the incomplete [sigma] polarization of the synchrotron beam, the beam instability, and so on. Therefore, a rotated-polarization peak has been detected near the critical angle but at the limits of the measurement accuracy. In principle, our experimental technique could be an alternative to circular polarization experiments, which are widely used at synchrotrons to study magnetic ordering. However, as we have shown, it makes high demands of the radiation source parameters. |
doi_str_mv | 10.1134/S1063776118050102 |
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M ; Gan'shina, E. A ; Kurlyandskaya, G. V ; Mukhamedzhanov, E. Kh ; Repchenko, Yu. L ; Svalov, A. V</creator><creatorcontrib>Andreeva, M. A ; Baulin, R. A ; Borisov, M. M ; Gan'shina, E. A ; Kurlyandskaya, G. V ; Mukhamedzhanov, E. Kh ; Repchenko, Yu. L ; Svalov, A. V</creatorcontrib><description>The dichroic effect ("rotated" polarization) in the reflectivity from a magnetically ordered sample is experimentally studied at the station PHASE of the Kurchatov Synchrotron Radiation Source. The experiments are performed for the [Gd.sub.0.23][Co.sub.0.77] film, which has a compensation temperature [T.sub.comp] [approximately equal to] 433 K, using linearly polarized radiation of the photon energy of 7930 eV ([L.sub.2] absorption edge of gadolinium) at room temperature. The developed theory of reflectivity accounted for the magnetic contributions to the scattering amplitude predicts the appearance of a peak for the orthogonal (to the incident polarization) polarization of the reflected radiation near the critical angle of the total external reflection. The experiment reveals the significant difficulties because of the incomplete [sigma] polarization of the synchrotron beam, the beam instability, and so on. Therefore, a rotated-polarization peak has been detected near the critical angle but at the limits of the measurement accuracy. In principle, our experimental technique could be an alternative to circular polarization experiments, which are widely used at synchrotrons to study magnetic ordering. 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The developed theory of reflectivity accounted for the magnetic contributions to the scattering amplitude predicts the appearance of a peak for the orthogonal (to the incident polarization) polarization of the reflected radiation near the critical angle of the total external reflection. The experiment reveals the significant difficulties because of the incomplete [sigma] polarization of the synchrotron beam, the beam instability, and so on. Therefore, a rotated-polarization peak has been detected near the critical angle but at the limits of the measurement accuracy. In principle, our experimental technique could be an alternative to circular polarization experiments, which are widely used at synchrotrons to study magnetic ordering. 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The developed theory of reflectivity accounted for the magnetic contributions to the scattering amplitude predicts the appearance of a peak for the orthogonal (to the incident polarization) polarization of the reflected radiation near the critical angle of the total external reflection. The experiment reveals the significant difficulties because of the incomplete [sigma] polarization of the synchrotron beam, the beam instability, and so on. Therefore, a rotated-polarization peak has been detected near the critical angle but at the limits of the measurement accuracy. In principle, our experimental technique could be an alternative to circular polarization experiments, which are widely used at synchrotrons to study magnetic ordering. However, as we have shown, it makes high demands of the radiation source parameters.</abstract><pub>Springer</pub><doi>10.1134/S1063776118050102</doi><tpages>802</tpages></addata></record> |
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subjects | Radiation (Physics) Rare earth metal compounds |
title | Magnetic Dichroism in the Reflectivity of Linearly Polarized Synchrotron Radiation from a Ti |
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