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Distinct domain switching in Nd0.05Ce0.95CoIn5 at low and high fields

机译:低场和高场中Nd0.05Ce0.95CoIn5中不同的域切换

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摘要

Nd0.05Ce0.95CoIn5 features a magnetic field-driven quantum phase transition that separates two antiferromagnetic phases with an identical magnetic structure inside the superconducting condensate. Using neutron diffraction we demonstrate that the population of the two magnetic domains in the two phases is affected differently by the rotation of the magnetic field in the tetragonal basal plane. In the low-field SDW-phase the domain population is only weakly affected while in the high-field Q-phase they undergo a sharp switch for fields around the a-axis. Our results provide evidence that the anisotropic spin susceptibility in both phases arises ultimately from spin-orbit interactions but are qualitatively different in the two phases. This provides evidence that the electronic structure is changed at the quantum phase transition, which yields a modified coupling between magnetism and superconductivity in the Q-phase.
机译:Nd0.05Ce0.95CoIn5具有磁场驱动的量子相变特性,该特性将超导冷凝物中具有相同磁性结构的两个反铁磁性相分离。使用中子衍射,我们证明了磁场在四边形基面中的旋转会不同地影响两相中两个磁畴的数量。在低场SDW阶段,域种群仅受到微弱的影响,而在高场Q阶段,它们围绕a轴的场发生急剧变化。我们的结果提供了证据,表明两个阶段的各向异性自旋磁化率最终源自自旋轨道相互作用,但在两个阶段的质性上不同。这提供了电子结构在量子相变处发生改变的证据,从而在Q相中的磁性和超导性之间产生了改进的耦合。

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