arXiv · cond-mat/0606645
Onset of a boson mode at superconducting critical point of underdoped YBa2Cu3Oy
Abstract
The thermal conductivity $κ$ of underdoped \Y was measured in the $T \to 0$ limit as a function of hole concentration $p$ across the superconducting critical point at $p_{SC}$ = 5.0%. ``Time doping'' was used to resolve the evolution of bosonic and fermionic contributions with high accuracy. For $p \leqslant p_{SC}$, we observe an additional $T^3$ contribution to $κ$ which we attribute to the boson excitations of a phase with long-range spin or charge order. Fermionic transport, manifest as a linear term in $κ$, is seen to persist unaltered through $p_{SC}$, showing that the state just below $p_{SC}$ is a thermal metal. In this state, the electrical resistivity varies as log$(1/T)$ and the Wiedemann-Franz law is violated.
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Nicolas Doiron-Leyraud, Mike Sutherland, S. Y. Li, Louis Taillefer, Ruixing Liang, D. A. Bonn, W. N. Hardy. 2006-11-27. Onset of a boson mode at superconducting critical point of underdoped YBa2Cu3Oy. https://doi.org/10.1103/physrevlett.97.207001
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