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Photoluminescence of Er3+ ions in layers of quasi-ordered silicon nanocrystals in a silicon dioxide matrix
Authors:P. K. Kashkarov  M. G. Lisachenko  O. A. Shalygina  V. Yu. Timoshenko  B. V. Kamenev  M. Schmidt  J. Heitmann  M. Zacharias
Affiliation:(1) Faculty of Physics, Moscow State University, Vorob’evy gory, Moscow, 119992, Russia;(2) Department of Electrical and Computer Engineering, New Jersey Institute of Technology University Heights Newark, New Jersey, 07102-1982, USA;(3) Max-Planck-Institut für Mikrostrukturphysik, 06120 Halle, Germany
Abstract:The spectra and kinetics of photoluminescence from multilayered structures of quasi-ordered silicon nanocrystals in a silica matrix were studied for undoped samples and samples doped with erbium. It was shown that the optical excitation energy of silicon nanocrystals could be effectively transferred to Er3+ ions, which was followed by luminescence at a wavelength of 1.5 µm. The effectiveness of energy transfer increased as the size of silicon nanocrystals decreased and the energy of exciting light quanta increased. The excitation of erbium luminescence in the structures was explained based on dipole-dipole interaction (the Förster mechanism) between excitons in silicon nanocrystals and Er3+ ions in silica surrounding them.
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