【2h】

Hall effect in quantum critical charge-cluster glass

机译:量子临界电荷簇玻璃的霍尔效应

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摘要

Upon doping, cuprates undergo a quantum phase transition from an insulator to a d-wave superconductor. The nature of this transition and of the insulating state is vividly debated. Here, we study the Hall effect in La2-xSrxCuO4 (LSCO) samples doped near the quantum critical point at x ∼ 0.06. Dramatic fluctuations in the Hall resistance appear below TCG ∼ 1.5 K and increase as the sample is cooled down further, signaling quantum critical behavior. We explore the doping dependence of this effect in detail, by studying a combinatorial LSCO library in which the Sr content is varied in extremely fine steps, Δx ∼ 0.00008. We observe that quantum charge fluctuations wash out when superconductivity emerges but can be restored when the latter is suppressed by applying a magnetic field, showing that the two instabilities compete for the ground state.
机译:掺杂后,铜酸盐经历从绝缘体到d波超导体的量子相变。生动地讨论了这种过渡和绝缘状态的性质。在这里,我们研究了在x〜0.06附近的量子临界点处掺杂的La2-xSrxCuO4(LSCO)样品中的霍尔效应。霍尔电阻的剧烈波动出现在TCG〜1.5 K以下,并且随着样品进一步冷却而增加,这标志着量子临界行为。我们通过研究组合的LSCO库来详细研究这种效应的掺杂依赖性,在该库中,Sr含量以极精细的步长变化,Δx〜0.00008。我们观察到,当超导出现时,量子电荷的波动就会消失,但是当施加磁场抑制后者时,量子电荷的波动可以恢复,这表明这两种不稳定性竞争着基态。

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