Tytuł artykułu
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Abstrakty
Single crystals of SrLaAlO4 (SLA) and SrLaGaO4 (SLG) have been grown from nonstoichiometric melts by the Czochralski method making use of different seed orientations, [100] (SLA, SLG), [110] (SLA) and [001] (SLG). The anisotropic properties of the crystal structure are reflected in the growth morphology of the crystals. In the case of (SLA) {101} facets appear at the crystal/melt interface and in that of [100] SLG {101} and {103} facets occur, while for [001] SLG {001} and {103} facets are present. SLA crystals are very similar to the theoretical growth forms computed according to the Hartman-Perdok theory for models with an effective charge on oxygen, qO −2|e|. However the habit of SLG crystals corresponds better to the theoretical growth forms based on an effective charge qO = −1.5|e| due to the presence of oxygen vacancies.
Słowa kluczowe
Rocznik
Tom
Strony
85--89
Opis fizyczny
Bibliogr. 19 poz., rys., tab.
Twórcy
autor
- Institute of Electronic Materials Technology, Warsaw, Poland
autor
- Institute of Electronic Materials Technology, Warsaw, Poland
autor
- Institute of Electronic Materials Technology, Warsaw, Poland
autor
- Faculty of Earth Sciences, Geodvnamical Research Institute, The Netherlands
Bibliografia
- 1. M. Berkowski, J. Fink-Finowicki, A. Pajaczkowska, K. Mazur, J. Sass W. Gorzkowski, M. Gutowski, A. Reich, H. Szymczak (Eds.), Proc. Eur. Conf. on HTSc Thin Films and Single Crystals, Progress of High Temperature Superconductivity, Sept. 30-Oct. 4, 1989, Ustron, Poland, Vol. 24, World Scientific, Singapure (1990), pp. 710–714
- 2.R. Sobolewski, P. Gierlowski, W. Kula, S. Zarembinski, S.J. Lewandowski, M. Berkowski, A. Pajaczkowska, B.P. Gorshunov, D.B. Lyudmirski, O.I. Sirotinski IEEE Trans. Magn., 27 (1991), p. 876
- 3.R.D. Shannon, R.A. Oswald, J.B. Parise, B.H.T. Chai, P. Byszewski, A. Pajaczkowska J. Solid State Chem., 98 (1992), p. 90
- 4.A. Gloubokov, R. Jablonski, W. Ryba-Romanowski, J. Sass, A. Pajaczkowska, R. Uecker, P. Reiche J. Crystal Growth, 147 (1995), p. 123
- 5.K. Nakamura, R. Katuno, I. Aoyama Phase Trans, 42 (1993), p. 99
- 6.A. Dabkowski, H.A. Dabkowska, J.E. Greedan J. Crystal Growth, 132 (1993), p. 205
- 7.R. Brown, V. Pendrick, D. Kalokitis, B.H.T. Chai Appl. Phys. Lett., 57 (1990), p. 1351
- 8.R. Uecker, P. Reiche, U. Geissler, D.-C. Uecker and D. Schultze, J. Crystal Growth, to be published.
- 9.A. Pajaczkowska, P. Byszewski J. Crystal Growth, 128 (1993), p. 694
- 10.M. Berkowski, A. Gloubokov XXXVIth Polish Crystal-lographic Meeting (27–28.06.1994), p. 77 Wroclaw, Poland. Abstr.
- 11.P. Byszewski, J. Domagala, J. Fink-Finowicki, A. Pajaczkowska Mater. Res. Bull., 27 (1992), p. 483
- 12.A. Pajaczkowska, J. Domagala, A. Gloubokov, R. Jablonski, A. Klos Cryst. Res. Technol., 31 (1996), p. 873
- 13.R. Jablonski, A. Pajaczkowska, A. Gloubokov Mol. Phys. Rep., 12 (1995), p. 103
- 14.W. Ryba-Romanowski, S. Golab, A. Gloubokov, A. Pajaczkowska Opt. Mater., 4 (1995), p. 515
- 15.K. Mazur, J. Sass, A. Pajaczkowska Proc. SPIE 1845 (1992), p. 103
- 16.P. Hartman (Ed.), Crystal Growth: An Introduction, Part A. Structure and Morphology, North-Holland, Amsterdam (1973), pp. 367–402
- 17.C.F. Woensdregt Faraday Discuss, 95 (1993), p. 97
- 18.C.F. Woensdregt, H.W.M. Janssen, A. Gloubokov and A. Pajaczkowska, to be published.
- 19.A. Gloubokov PhD Thesis IEMT, Warsaw (1996)
Uwagi
PL
Artykuł przedrukowany z czasopisma "Journal of Crystal Growth", 1997, Vol.171(3), pp.387-391
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-50e0fe37-c63e-4f8d-a835-f256ea07ed13