POLARIZATION PROPERTIES OF SYNCHROTRON RADIATION IN THE STUDY OF ANISOTROPIC INSULATING CRYSTALS
V. N. Kolobanov (),
I. A. Kamenskikh,
V. V. Mikhailin,
I. N. Shpinkov,
D. A. Spassky,
A. N. Vasil'ev,
B. I. Zadneprovsky,
L. I. Potkin and
G. Zimmerer
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V. N. Kolobanov: Synchrotron Radiation Laboratory, Physics Department, Moscow State University, Vorob'evy Gory Moscow 119899, Russia
I. A. Kamenskikh: Synchrotron Radiation Laboratory, Physics Department, Moscow State University, Vorob'evy Gory Moscow 119899, Russia
V. V. Mikhailin: Synchrotron Radiation Laboratory, Physics Department, Moscow State University, Vorob'evy Gory Moscow 119899, Russia
I. N. Shpinkov: Synchrotron Radiation Laboratory, Physics Department, Moscow State University, Vorob'evy Gory Moscow 119899, Russia
D. A. Spassky: Synchrotron Radiation Laboratory, Physics Department, Moscow State University, Vorob'evy Gory Moscow 119899, Russia
A. N. Vasil'ev: Synchrotron Radiation Laboratory, Physics Department, Moscow State University, Vorob'evy Gory Moscow 119899, Russia
B. I. Zadneprovsky: All-Russian Research Institute for Synthesis of Materials, Alexandrov, Vladimir region, Russia
L. I. Potkin: All-Russian Research Institute for Synthesis of Materials, Alexandrov, Vladimir region, Russia
G. Zimmerer: II Institut fur Experimentalphysik der Universitat Hamburg, D-22761 Hamburg, Germany
Surface Review and Letters (SRL), 2002, vol. 09, issue 01, 469-472
Abstract:
The optical properties of a wide series of the tungstates with the scheelite and wolframite crystal structure at the threshold of the fundamental absorption region were studied. New information about the influence of the electronic states forming the bottom of the conduction band and the top of the valence band on the formation of emission centers and mechanisms of energy transfer to these centers was obtained.
Date: 2002
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DOI: 10.1142/S0218625X02002476
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