Angular fluctuations of a multicomponent order describe the pseudogap of YBa2Cu3O(6+x)

The hole-doped cuprate high-temperature superconductors enter the pseudogap regime as their superconducting critical temperature, Tc, falls with decreasing hole density. Recent x-ray scattering experiments in YBa2Cu3O(6+x) observe incommensurate charge-density wave fluctuations whose strength rises...

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Veröffentlicht in:Science (American Association for the Advancement of Science) 2014-03, Vol.343 (6177), p.1336-1339
Hauptverfasser: Hayward, Lauren E, Hawthorn, David G, Melko, Roger G, Sachdev, Subir
Format: Artikel
Sprache:eng
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Zusammenfassung:The hole-doped cuprate high-temperature superconductors enter the pseudogap regime as their superconducting critical temperature, Tc, falls with decreasing hole density. Recent x-ray scattering experiments in YBa2Cu3O(6+x) observe incommensurate charge-density wave fluctuations whose strength rises gradually over a wide temperature range above Tc, but then decreases as the temperature is lowered below Tc. We propose a theory in which the superconducting and charge-density wave orders exhibit angular fluctuations in a six-dimensional space. The theory provides a natural quantitative fit to the x-ray data and can be a basis for understanding other characteristics of the pseudogap.
ISSN:1095-9203
DOI:10.1126/science.1246310