论文标题

在掺杂的旋转液体液体中的量子临界相的热电特征

Thermoelectric signature of quantum critical phase in a doped spin liquid candidate

论文作者

Wakamatsu, K., Suzuki, Y., Fujii, T., Miyagawa, K., Taniguchi, H., Kanoda, K.

论文摘要

量子自旋液体是一种长期关注的非平凡磁态,其中旋转密切相关和纠缠,但不订单1、2;它的进一步吸引人的是它的掺杂版本,它可能拥有奇怪的金属和非常规的超导率3。有前途的掺杂旋转液体的唯一候选者是三角晶格有机导体Kappa-(Bedt-TTF)4HG2.89BR8,最近发现具有金属性,旋转液体样的磁性和BEC Like Supervuctivity 4-6。具有自旋液体行为的金属状态的性质正在等待进一步阐明。在这里,我们报告了热电学签名,即自旋液体背景中的移动孔处于量子临界状态,并且与BEC样的超导性有关。 Seebeck系数除以对数差异的冷却时增强了量子关键性。此外,对数增强与压力变化下的超导过渡温度以及超导过渡过渡变化时S/T的温度和磁场曲线与以前建议的BEC-BCS交叉的压力一致。目前的结果表明,掺杂的旋转液体中的量子临界值在一个阶段而不是在一个阶段出现,并且参与了非常规的BEC样性质。

Quantum spin liquid is a nontrivial magnetic state of longstanding interest, in which spins are strongly correlated and entangled but do not order1, 2; further intriguing is its doped version, which possibly hosts strange metal and unconventional superconductivity3. Promising and currently the only candidate of the doped spin liquid is a triangular-lattice organic conductor, kappa-(BEDT-TTF)4Hg2.89Br8, recently found to hold metallicity, spin-liquid-like magnetism and BEC-like superconductivity4-6. The nature of the metallic state with the spin-liquid behaviour is awaiting to be further clarified. Here, we report the thermoelectric signature that mobile holes in the spin liquid background is in a quantum critical state and it pertains to the BEC-like superconductivity. The Seebeck coefficient divided by temperature, S/T, is enhanced on cooling with logarithmic divergence indicative of quantum criticality. Furthermore, the logarithmic enhancement is correlated with the superconducting transition temperature under pressure variation, and the temperature and magnetic field profile of S/T upon the superconducting transition change with pressure in a consistent way with the previously suggested BEC-BCS crossover. The present results reveal that the quantum criticality in a doped spin liquid emerges in a phase, not at a point, and is involved in the unconventional BEC-like nature.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源