论文标题

Cuprate超导体BI $ _2 $ sr $ _ {2-x} $ la $ _x $ cuo $ _ {6+δ} $

Transport signatures of the pseudogap critical point in the cuprate superconductor Bi$_2$Sr$_{2-x}$La$_x$CuO$_{6+δ}$

论文作者

Lizaire, M., Legros, A., Gourgout, A., Benhabib, S., Badoux, S., Laliberté, F., Boulanger, M. -E., Ataei, A., Grissonnanche, G., LeBoeuf, D., Licciardello, S., Wiedmann, S., Ono, S., Raffy, H., Kawasaki, S., Zheng, G. -Q., Doiron-Leyraud, N., Proust, C., Taillefer, L.

论文摘要

Cuprate超导体BI $ _2 $ SR $ _ {2-X} $ LA $ _X $ _x $ _x $ _ {6+δ} $的五个传输系数在正常状态下测量到低温,通过施加磁场(最多66T),足以抑制超大型超导管。电阻率,霍尔系数,导热率,Seebeck系数和热霍尔电导率在两个过度溶解的单晶中测量,LA浓度$ x = 0.2 $($ t _ {\ rm c} = 18 $ k)和$ x = 0.0 $($ x = 0.0 $($ t _ {$ t _ {\ rm c} = 10 $ k)= 10 $ k)。样品的掺杂$ p $非常接近关键掺杂$ p^{\ star} $,其中伪随阶段结束。电阻率显示了对温度的线性依赖性,其斜率与普朗克散发量一致。大厅号$ n _ {\ rm h} $随着$ p $的减少而减小,与载体密度从$ n = 1+p $下降到$ p^{\ star} $ to $ n = p $ to $ p $ to $ p^{\ star} $。 $ n _ {\ rm h} $中的下降是伴随的,与先前的NMR骑士移动测量值推断的状态密度急剧下降。热导率满足Wiedemann-Franz定律,表明$ t = 0 $时的伪随相位是一种金属,其费米子激发像常规电子一样带有热量和电荷。 Seebeck系数在低温(量子临界值的标志)下对数分化。在低温下,霍尔电导率变为负,表明声子在伪随阶段是手性。鉴于在其他非常不同的丘比特中观察到这些相同特性,我们的研究为伪随阶段的这五个签名及其临界点提供了有力的证据。

Five transport coefficients of the cuprate superconductor Bi$_2$Sr$_{2-x}$La$_x$CuO$_{6+δ}$ were measured in the normal state down to low temperature, reached by applying a magnetic field (up to 66T) large enough to suppress superconductivity. The electrical resistivity, Hall coefficient, thermal conductivity, Seebeck coefficient and thermal Hall conductivity were measured in two overdoped single crystals, with La concentration $x = 0.2$ ($T_{\rm c}=18$K) and $x = 0.0$ ($T_{\rm c}=10$K). The samples have dopings $p$ very close to the critical doping $p^{\star}$ where the pseudogap phase ends. The resistivity displays a linear dependence on temperature whose slope is consistent with Planckian dissipation. The Hall number $n_{\rm H}$ decreases with reduced $p$, consistent with a drop in carrier density from $n = 1+p$ above $p^{\star}$ to $n=p$ below $p^{\star}$. This drop in $n_{\rm H}$ is concomitant with a sharp drop in the density of states inferred from prior NMR Knight shift measurements. The thermal conductivity satisfies the Wiedemann-Franz law, showing that the pseudogap phase at $T = 0$ is a metal whose fermionic excitations carry heat and charge as do conventional electrons. The Seebeck coefficient diverges logarithmically at low temperature, a signature of quantum criticality. The thermal Hall conductivity becomes negative at low temperature, showing that phonons are chiral in the pseudogap phase. Given the observation of these same properties in other, very different cuprates, our study provides strong evidence for the universality of these five signatures of the pseudogap phase and its critical point.

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