Nernst and Seebeck coefficients of the cuprate superconductor YBa2Cu3O6.67: a study of Fermi surface reconstruction

The Seebeck and Nernst coefficients S and nu of the cuprate superconductor YBa{2}Cu{3}O{y} (YBCO) were measured in a single crystal with doping p=0.12 in magnetic fields up to H=28 T. Down to T=9 K, nu becomes independent of field by H approximately 30 T, showing that superconducting fluctuations ha...

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Veröffentlicht in:Physical review letters 2010-02, Vol.104 (5), p.057005-057005
Hauptverfasser: Chang, J, Daou, R, Proust, Cyril, Leboeuf, David, Doiron-Leyraud, Nicolas, Laliberté, Francis, Pingault, B, Ramshaw, B J, Liang, Ruixing, Bonn, D A, Hardy, W N, Takagi, H, Antunes, A B, Sheikin, I, Behnia, K, Taillefer, Louis
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Sprache:eng
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Zusammenfassung:The Seebeck and Nernst coefficients S and nu of the cuprate superconductor YBa{2}Cu{3}O{y} (YBCO) were measured in a single crystal with doping p=0.12 in magnetic fields up to H=28 T. Down to T=9 K, nu becomes independent of field by H approximately 30 T, showing that superconducting fluctuations have become negligible. In this field-induced normal state, S/T and nu/T are both large and negative in the T-->0 limit, with the magnitude and sign of S/T consistent with the small electronlike Fermi surface pocket detected previously by quantum oscillations and the Hall effect. The change of sign in S(T) at T approximately 50 K is remarkably similar to that observed in La2-xBaxCuO4, La{2-x-y}Nd{y}Sr_{x}CuO{4}, and La{2-x-y}Eu{y}Sr{x}CuO{4}, where it is clearly associated with the onset of stripe order. We propose that a similar density-wave mechanism causes the Fermi surface reconstruction in YBCO.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.104.057005