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Influence of active admixtures onto tellurite glass refractive index

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The goal of this work was to investigate the influence of rare earth ions such as Tm3+, Yb3+ on physico-chemical properies of tellurite glass from the TeO2-WO3-PbO-PbF2-Na2O system. The thermal characteristic of tellurite glass Tm3+, Yb3+ doped have been presented. The effect of the glass crystallization on thermal stability of the glass and crystallizing phases formed upon heat treatment were investigated by DTA/DSC/, XRD methods. The spectral dependence of ellipsometric angles of the tellurite glass samples, have been studied. The influence of ions of rare earth elements, i.e. Tm 3+ and Yb3+, onto changes of refractive index of glass P1 (without RE admixture) were examined. The optical measurements were conducted on Woollam M2000 spectroscopic ellipsometer, in spectral range of 190–1700 nm.
Słowa kluczowe
Rocznik
Strony
519--522
Opis fizyczny
Bibliogr. 14 poz., rys.
Twórcy
autor
autor
autor
  • Faculty of Materials Science and Ceramics, University of Science and Technology, AGH, 30 Mickiewicza Ave., 30-059 Kraków, Poland, manuelar@agh.edu.pl
Bibliografia
  • [1] L.M. Fortes, L.F. Santos, M.C. Gonc¸alves, and R.M. Almeida, “Preparation and characterization of Er3+-doped TeO2-based oxyhalide glasses”, J. Non-Cryst. Solids 324, 150–158 (2003).
  • [2] J. Wasylak and M. Reben, “A new oxyfluoride tellurite glasses for optoelectronics”, Eur. Glass Technology – Eur. J. Glass Science and Technology: Physics and Chemistry of Glasses 48 (4), 264–250 (2007).
  • [3] D.Dorosz, “Rare erth ions doped aluminosilicate and phosphate double cald optical fibers”, Bull. Pol. Ac.: Tech. 56 (2), 103–112 (2008).
  • [4] T. Kosuge, Y. Benino, V. Dimitrov, R. Sato, and T. Komatsu, “Thermal stability and heat capacity changes at the glass transition in K2O-WO3-TeO2 glasses”, J. Non-CFigt. Solids 242, 154–164 (1998).
  • [5] D.W. Hall, M.A. Newhouse, N.F. Borrelli, W.H. Dumbaugh, and D.L. Weidman, “Nonlinear optical suscettilibilities of some Ge-Se-Te glasses”, J. Non-Cryst. Solids 103, 179–194 (1988).
  • [6] E.M. Vogel, M.J. Weber, and D.M. Krol, “Nonlinear optical phenomena in glass”, Phys.Chem. Glasses 32, 231–253 (1991).
  • [7] M. Reben, J. Wasylak, and D. Dorosz, “Tellurite glasses for optical fibres fabrication”, Proc. SPIE, Int. Society for Optical Engineering 7120, CD-ROM (2008).
  • [8] M. Reben, J. Wasylak, and P. Wantuch, “Optical properties and thermal stability of tellurite glasses”, Polish Conf. PKO 1, CD-ROM (2009), (in Polish).
  • [9] R.M.A. Azzam and N.M. Bashara, “Spectroscopic ellipsometry data analysis:measured versus calculated quantities”, Thin Solid Films 313–314, 33–39 (1998).
  • [10] F. Lahoz, I.R. Mart´ın, U.R. Rodr´ıguez-Mendoza, I. Iparraguirre, J. Azkargorta, A. Mendioroz, R. Balda, J. Fern´andez, and V. Lav´ın, “Rare earths in nanocrystalline glass-ceramics”, Optical Materials 27, 1762–1770 (2005).
  • [11] G. Liao, Q. Chen, J. Xing, H. Gebavi, D. Milanese, M. Fokine, and M. Ferraris, “Preparation and characterization of new fluorotellurite glasses for photonics application”, J. Non-Crystalline Solids 355, 447–452 (2009).
  • [12] F. Urbach, “The long wavenlength of photographic sensitivity and of the electronic absorption of solids”, Phys. Rev. 92, 1324 (1953).
  • [13] D.A.G. Bruggeman, “Berechnung verschiedener physikalischer konstanten von heterogenen substanzen”, Ann. Phys. B 24, 636–674 (1981).
  • [14] L. Lin, G. Ren , M. Chen, Y. Liu, and Q. Yang, “Study of fluorine losses and spectroscopic properties of Er3+ doped oxyfluoride silicate glasses and glass ceramics”, Optical Materials 31, 1439–1442 (2009).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPG8-0039-0020
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