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Competing magnetic orders in the superconducting state of heavy-fermion CeRhIn5

机译:重铁离子CeRhIn5的超导状态下的竞争磁阶

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摘要

Applied pressure drives the heavy-fermion antiferromagnet CeRhIn5 toward a quantum critical point that becomes hidden by a dome of unconventional superconductivity. Magnetic fields suppress this superconducting dome, unveiling the quantum phase transition of local character. Here, we show that 5% magnetic substitution at the Ce site in CeRhIn5, either by Nd or Gd, induces a zero-field magnetic instability inside the superconducting state. This magnetic state not only should have a different ordering vector than the high-field local-moment magnetic state, but it also competes with the latter, suggesting that a spin-density-wave phase is stabilized in zero field by Nd and Gd impurities, similarly to the case of Ce0.95Nd0.05CoIn5. Supported by model calculations, we attribute this spin-density wave instability to a magnetic-impurity-driven condensation of the spin excitons that form inside the unconventional superconducting state.
机译:施加的压力将重铁反铁磁体CeRhIn5推向一个量子临界点,该临界点被非常规的超导圆顶所隐藏。磁场抑制了这个超导圆顶,揭示了局部特征的量子相变。在这里,我们显示在CeRhIn5的Ce位置被Nd或Gd 5%的磁取代会在超导状态内引起零场磁不稳定性。这种磁态不仅应具有不同于高场局部矩磁态的有序矢量,而且还应与后者竞争,这表明自旋密度波相位通过Nd和Gd杂质在零场处稳定,与Ce0.95Nd0.05CoIn5的情况类似。在模型计算的支持下,我们将这种自旋密度波的不稳定性归因于在非常规超导状态下形成的自旋激子的磁杂质驱动的凝聚。

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