Los Alamos National Laboratory, Los Alamos, New Mexico 87545, USA.
Max-Planck-Institute for Chemical Physics of Solids, 01187 Dresden, Germany.
Nature. 2017 Aug 17;548(7667):313-317. doi: 10.1038/nature23315. Epub 2017 Aug 7.
Electronic nematic materials are characterized by a lowered symmetry of the electronic system compared to the underlying lattice, in analogy to the directional alignment without translational order in nematic liquid crystals. Such nematic phases appear in the copper- and iron-based high-temperature superconductors, and their role in establishing superconductivity remains an open question. Nematicity may take an active part, cooperating or competing with superconductivity, or may appear accidentally in such systems. Here we present experimental evidence for a phase of fluctuating nematic character in a heavy-fermion superconductor, CeRhIn (ref. 5). We observe a magnetic-field-induced state in the vicinity of a field-tuned antiferromagnetic quantum critical point at H ≈ 50 tesla. This phase appears above an out-of-plane critical field H* ≈ 28 tesla and is characterized by a substantial in-plane resistivity anisotropy in the presence of a small in-plane field component. The in-plane symmetry breaking has little apparent connection to the underlying lattice, as evidenced by the small magnitude of the magnetostriction anomaly at H*. Furthermore, no anomalies appear in the magnetic torque, suggesting the absence of metamagnetism in this field range. The appearance of nematic behaviour in a prototypical heavy-fermion superconductor highlights the interrelation of nematicity and unconventional superconductivity, suggesting nematicity to be common among correlated materials.
电子向列相材料的电子系统对称性低于其下的晶格,类似于向列液晶中没有平移序的各向异性排列。这种向列相出现在铜基和铁基高温超导体中,它们在超导性中的作用仍然是一个悬而未决的问题。向列相可能积极参与,与超导性合作或竞争,或者在这些系统中偶然出现。在这里,我们提供了重费米子超导体 CeRhIn(参考文献 5)中存在波动向列特征相的实验证据。我们观察到在磁场调谐反铁磁量子临界点附近的磁场诱导状态,磁场约为 50 特斯拉。该相出现在垂直于平面的临界场 H* ≈ 28 特斯拉之上,其特点是在存在小的平面磁场分量的情况下具有很大的平面电阻率各向异性。平面对称性的破坏与底层晶格几乎没有明显的联系,这一点可以从 H*处磁致伸缩异常的小幅度证明。此外,在这个磁场范围内,没有出现磁转矩异常,这表明不存在亚铁磁性。在典型的重费米子超导体中出现向列行为突出了向列性和非常规超导性之间的相互关系,表明向列性在关联材料中很常见。