Hostname: page-component-78c5997874-mlc7c Total loading time: 0 Render date: 2024-11-10T22:32:06.837Z Has data issue: false hasContentIssue false

Floating Zone Growth of Bulk Single Crystals of Complex Oxides

Published online by Cambridge University Press:  01 February 2011

Prasenjit Guptasarma
Affiliation:
Dept of Physics, 1900 E Kenwood Blvd, University of Wisconsin, Milwaukee, WI 53211, USA
Mark S. Williamsen
Affiliation:
Dept of Physics, 1900 E Kenwood Blvd, University of Wisconsin, Milwaukee, WI 53211, USA
Shishir K. Ray
Affiliation:
Dept of Physics, 1900 E Kenwood Blvd, University of Wisconsin, Milwaukee, WI 53211, USA
Get access

Abstract

In this MRS Proceedings paper, we present a review of the floating zone growth process, and describe growth techniques as relevant to four selected families of current or continued interest in the area of condensed matter physics of highly correlated electron systems: Cuprate oxides (Bi2Sr2CaCu2Oy), Ruthenate oxides (Sr2RuO4), Manganite oxides (La1-xSrxMnO3, La2–2xSr1+2xMn2O7, (RE) MnO3 (RE=Rare Earth)) and Ferrite oxides (BiFeO3). We also discuss our experiences with factors that tend to contribute to poor crystal growth, as relevant to experiments to probe correlated-electron physics in such crystals.

Type
Research Article
Copyright
Copyright © Materials Research Society 2005

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

REFERENCES

1. Correspondence: pg@uwm.edu Google Scholar
2. e.g., Norman, M.R., Ding, H., Randeria, M., Campuzano, J.C., Yokoya, T., Takeyuchi, T., Takahashi, T., Mochiku, T., Kadowaki, K., Guptasarma, P. and Hinks, D., Nature 392 157, (Nature News & Views, p. 134) (1998);Google Scholar
3. Liu, H. L., Blumberg, G., Klein, M. V., Guptasarma, P., and Hinks, D. G., Phys Rev Lett 82 (17) 3524 (1999)Google Scholar
4. e.g., Miyakawa, N., Guptasarma, P., Zasadzinski, J. F., Hinks, D.G. and Gray, K. E., Phys Rev Lets 80 (1) 157 (1998)Google Scholar
5. Mackenzie, A.P., Haselwimmer, R.K.W., Tyler, A. W., Lonzatich, G.G., Mori, Y., Nishizaki, S. and Maeno, Y., Phys. Rev. Lett, 80, 161 (1998)Google Scholar
6. Guptasarma, P., Williamsen, M.S., Sarma, B.K., Suslov, A., Schneider, M.L., Sendelbach, S., Onellion, M., Taft, G., Proc. Spectroscopies of Novel Superconductors, sub to: J. Phys. Chem. Sol. (2004).Google Scholar
7. e.g., Wang, J., Neaton, J.B., Zheng, H., Nagarajan, V., Ogale, S.B., Liu, B., Viehland, D., Vaithyanathan, V., Schlom, D. G., Waghmare, U. V., Science 299, 1719 (2003); and refs. therein. Google Scholar