Full-text resources of PSJD and other databases are now available in the new Library of Science.
Visit https://bibliotekanauki.pl

PL EN


Preferences help
enabled [disable] Abstract
Number of results
2011 | 119 | 6 | 871-874

Article title

Dielectric Relaxation Phenomena in SBN Single Crystals Doped with Ce

Content

Title variants

Languages of publication

EN

Abstracts

EN
The dielectric study of Sr_{0.73}Ba_{0.27}Nb_2O_6:Ce (SBN) crystals along [010] crystallographic axis was performed in the temperature region of 310-360 K and frequency range from 25 Hz up to 1 MHz. The thermal dipole relaxation of quasi-Debye-type for this orientation of sample was observed in both investigated structural phases. The phase transition was most clearly seen from the temperature dependence of the relaxation time at T_{c} = 320 K. The relaxation processes were related to the collective oscillations of the Nb-O bonds in the two different type corner-sharing NbO_6 octahedra aligned along c-axis.

Keywords

Contributors

author
  • Ivan Franko National University of Lviv, 107 Tarnavskyi Str., L'viv, 79017, Ukraine
  • Scientific-Technical and Educational Centre of Low-Temperature Studies, Ivan Franko National University of Lviv, 50 Dragomanov Str., Lviv, 79005, Ukraine
author
  • Hetman P. Sahaydachnyi Academy of the Army, 32 Gvardiyska Str., Lviv, 79012, Ukraine
author
  • Scientific-Technical and Educational Centre of Low-Temperature Studies, Ivan Franko National University of Lviv, 50 Dragomanov Str., Lviv, 79005, Ukraine
  • Scientific-Technical and Educational Centre of Low-Temperature Studies, Ivan Franko National University of Lviv, 50 Dragomanov Str., Lviv, 79005, Ukraine

References

  • 1. J.R. Oliver, R.R. Neurgaonkar, L.E. Cross, J. Appl. Phys. 64, 37 (1988)
  • 2. M. Miyagi, Ya. Sugiyama, Sh. Yagi, I. Hatakeyama, Jpn. J. Appl. Phys. 33, 1417 (1994)
  • 3. P.B. Jamieson, S.C. Abrahams, J.L. Bernstein, J. Chem. Phys. 48, 5048 (1968)
  • 4. V.I. Simonov, Nature 11, 4 (2003) (in Russian)
  • 5. T.S. Chernaya, B.A. Maksimov, I.V. Verin, L.I. Ivleva, V.I. Simonov, Crystallogr. Rep. 42, 375 (1997)
  • 6. T.S. Chernaya, B.A. Maksimov, T.R. Volk, L.I. Ivleva, V.I. Simonov, Phys. Solid State 42, 1716 (2000)
  • 7. J. Ravez, A. Simon, J. Solid State Chem. 162, 260 (2001)
  • 8. C. Elassalde, J. Ravez, J. Mater. Chem. 10, 681 (2000)
  • 9. C. David, T. Granzow, A. Tunyagi, M. Woehlecke, T. Woike, K. Betzler, M. Ulex, M. Imlau, R. Pankrath, Phys. Status Solidi A 201, R49 (2004)
  • 10. A.S. Bhalla, R. Guo, L.E. Cross, G. Burus, F.H. Dacol, R.R. Neurgaonkar, Phys. Rev. B 36, 2030 (1987)
  • 11. M.E. Lines, A.M. Glass, Principles and Applications of Ferroelectrics and Related Materials, Mir, Moscow 1981 (in Russian)
  • 12. T. Volk, L. Ivleva, P. Lykov, N. Polozkov, V. Salobutin, R. Pankrath, M. Woehlecke, Opt. Mater. 18, 179 (2001)
  • 13. W.H. Huang, D. Viehland, R.R. Neurgaonkar, J. Appl. Phys. 76, 490 (1994)
  • 14. L.E. Cross, Ferroelectrics 76, 241 (1987)
  • 15. I.P. Rayevskiy, V.V. Yeremkin, V.G. Smotrakov, Ye.S. Gagarina, M.A. Malitskaya, Techn. Phys. Lett. 25, 47 (1999) (in Russian)
  • 16. Yu. Poplavko, Physics of Dielectrics, Vyshcha Shkola, Kyiv 1980 (in Russian)
  • 17. P. Debye, Polar Molecules, Dover Publ. Inc., New York 1945
  • 18. J.C. Badot, N. Baffier, A. Fourier-Lamer, Ph. Colomban, J. Phys. 48, 1325 (1987) (in France)
  • 19. J.C. Badot, N. Baffier, A. Fourier-Lamer, Ph. Colomban, Solid State Ion. 28-30, 1617 (1988)
  • 20. A. Chelkowski, Dielectric Physics, Elsevier, Amsterdam 1980
  • 21. S. Podlozhenov, H.A. Graetsch, Ju. Schneider, M. Ulex, M. Wöhlecke, K. Betzler, Acta Crystallogr. B 62, 960 (2006)
  • 22. A. Simon, G.-T. Joo, M. Maglione, J. Ravez, Solid State Sci. 9, 52 (2007)

Document Type

Publication order reference

Identifiers

YADDA identifier

bwmeta1.element.bwnjournal-article-appv119n626kz
JavaScript is turned off in your web browser. Turn it on to take full advantage of this site, then refresh the page.