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The Systematics of Irreversibility in Superconducting Thallium Cuprates

Published online by Cambridge University Press:  26 February 2011

J. L. Tallon
Affiliation:
DSIR Physical Sciences, P. O. Box 31313, Lower Hutt, New Zealand.
M. R. Presland
Affiliation:
DSIR Physical Sciences, P. O. Box 31313, Lower Hutt, New Zealand.
R. G. Buckley
Affiliation:
DSIR Physical Sciences, P. O. Box 31313, Lower Hutt, New Zealand.
A. Mawdsley
Affiliation:
DSIR Physical Sciences, P. O. Box 31313, Lower Hutt, New Zealand.
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Abstract

The irreversibility lines, Hirr(T), for the series of superconducting compoundsTlmA2CunO2+m+2n, where A is Ba or Sr, are measured between 0 and 1 tesla for m = 1,2 and n = 1,2,3 and 4 and show a marked steepening with decreasing anisotropy i.e. as m is lowered from 2 to 1. In addition, for m=2 material Hlrr(T) is observed to steepen with decreasing number of CuO2 layers. The hole dependence of the irreversibility line is also investigated in TI2Ba2CuO6+6 by changing the oxygen stoichiometry, 6. Hirr(T) progressively steepens with increasing hole concentration on the overdoped sida of Tc(max). These results are consistent with a model of flux motion arising from a crossover from 3-D vortex lines to 2-D pancake vortices which are decoupled in the c-direction, and provide guidance for materials selection and optimum doping.

Type
Research Article
Copyright
Copyright © Materials Research Society 1992

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References

REFERENCES

[1] Sato, K., IEEE Trans, on Magn. Mag. 27, 1231 (1991).Google Scholar
[2] Presland, M. R. et al, Physica C 191, 307 (1992).Google Scholar
[3] Talion, J. L. et al (Physica C, to be published).Google Scholar
[4] Clemm, J. R., Phys. Rev. B43, 7837 (1991).Google Scholar
[5] Kim, D. H. et al, Physica B 177, 431 (1991).Google Scholar
[6] Presland, M. R. et al, Proceedings of Intnl. Meeting on Critical Currents in High-Tc Superconductors, Vienna, April 1992.Google Scholar