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Electron-Doped Superconductivity in CuO2 Layered Compounds with Nd2CuO4− structure

Published online by Cambridge University Press:  21 February 2011

H. Takagi
Affiliation:
Engineering Research Institute, University of Tokyo, Yayoi, Bunkyo-ku, Tokyo 113, Japan
T. Ito
Affiliation:
Engineering Research Institute, University of Tokyo, Yayoi, Bunkyo-ku, Tokyo 113, Japan
H. Matsubara
Affiliation:
Engineering Research Institute, University of Tokyo, Yayoi, Bunkyo-ku, Tokyo 113, Japan
H. Watabe
Affiliation:
Engineering Research Institute, University of Tokyo, Yayoi, Bunkyo-ku, Tokyo 113, Japan
T. Ido
Affiliation:
Engineering Research Institute, University of Tokyo, Yayoi, Bunkyo-ku, Tokyo 113, Japan
Y. Tokura
Affiliation:
Department of Physics, University of Tokyo, Hongo, Tokyo 113, Japan
S. Uchida
Affiliation:
Engineering Research Institute, University of Tokyo, Yayoi, Bunkyo-ku, Tokyo 113, Japan
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Abstract

We have discovered 24 K-superconductivity in a family of compounds Ln2−xCexCuO4−y (Ln=Pr, Nd, Sm). Novel feature of the superconductivity in these family of compounds is that superconductivity is produced by electron-doping in sharp contrast with high-Tc cuprates discovered so far. The effect of doping on physical properties particularly the elecronic phase diagram and transport coefficients which indicate symmetry in many respects between electron- and hole- doping is described.

Type
Research Article
Copyright
Copyright © Materials Research Society 1989

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References

REFERENCES

1. Muller-Buschbaum, Hk., Angew. Chem. Int. Ed. Engl 16, 674 (1977).Google Scholar
2. Sawa, H. et al., Nature 337, 345 (1989).Google Scholar
3. Bednorz, J. G. and Muller, K. A., Z. Phys. B64, 189 (1986).Google Scholar
4. Akimitsu, J., Suzuki, S., Watanabe, M. and Sawa, H., Jpn. J. Appl. Phys. 27, L2283 (1988).Google Scholar
5. Tokura, Y. et al., Phys. Rev. B (in press).Google Scholar
6. Tokura, Y., Takagi, H., Watabe, H., Matsubara, H., Uchida, S., Hiraga, K., Oku, T., Mochiku, T. and Asano, H., submitted to Phys. Rev. B; After the submittion of this manuscript, We have discovered LaLn(Sr)CuO4-y shows a bulk superconductivity with To 15 K after the annealing under the oxygen high pressure of 400 atm.Google Scholar
7. Kondo, J. and Nagai, S., Research Report on Mechanism of Superconductivity, p226.Google Scholar
8. Tokura, Y., Takagi, H. and Uchida, S., Nature 337, 345 (1989).Google Scholar
9. Takagi, H., Uchida, S. and Tokura, Y., Phys. Rev. Lett. 62, 1197 (1989).Google Scholar
10. Markert, J. T. and Maple, M. B., to be published in Solid State Commun.Google Scholar
11. James, A. C. W. P., Zahurak, S. M., Murphy, D. W., Nature 338, 240 (1989).Google Scholar
12 See for example, Proceedings of the Adriatico Research Conference on Towards the Theoretical Understanding of High Temperature Superconductivity, edited by Lundqvist, S., Tosatti, E., Tosi, M. and Yu, Lu (World Scientific, 1988).Google Scholar
13. Fujimori, A., Tokura, Y., Eisaki, H., Takagi, H., Uchida, S. and Takayama-Muromachi, E., submitted to Phys. Rev. B.Google Scholar
14. Oda, M. et al, preprint.Google Scholar
15. Luke, G. M. et al., Nature 338, 49 (1989).Google Scholar
16. Torrance, J. B., Tokura, Y., Nazzal, A. I., Bezinge, A., Huang, T. C. and Parkin, S. S. P., Phys. Rev. Lett. 61, 1127 (1988).Google Scholar
17. Takagi, H., Ido, T., Ishibashi, S., Uota, M., Uchida, S. and Tokura, Y., submitted to Phys. Rev. B.Google Scholar
18. Takagi, H., Ito, T., Uchida, S. and Tokura, Y., to be submitted.Google Scholar
19. Tranquada, J. M., Heald, S. M., Moodenbaugh, A. R., Liang, G. and Croft, M., to be published in Nature.Google Scholar