II. Physikalisches Institut, Universität zu Köln, Zülpicher Str. 77, D-50937, Köln, Germany.
National Institute of Advanced Industrial Science and Technology (AIST), Tsukuba, Ibaraki, 305-8568, Japan.
Sci Rep. 2017 Sep 4;7(1):10307. doi: 10.1038/s41598-017-10208-1.
Two strong arguments in favor of magnetically driven unconventional superconductivity arise from the coexistence and closeness of superconducting and magnetically ordered phases on the one hand, and from the emergence of magnetic spin-resonance modes at the superconducting transition on the other hand. Combining these two arguments one may ask about the nature of superconducting spin-resonance modes occurring in an antiferromagnetic state. This problem can be studied in underdoped BaFe As, for which the local coexistence of large moment antiferromagnetism and superconductivity is well established by local probes. However, polarized neutron scattering experiments are required to identify the nature of the resonance modes. In the normal state of Co underdoped BaFe As the antiferromagnetic order results in broad magnetic gaps opening in all three spin directions that are reminiscent of the magnetic response in the parent compound. In the superconducting state two distinct anisotropic resonance excitations emerge, but in contrast to numerous studies on optimum and over-doped BaFe As there is no isotropic resonance excitation. The two anisotropic resonance modes appearing within the antiferromagnetic phase are attributed to a band selective superconducting state, in which longitudinal magnetic excitations are gapped by antiferromagnetic order with sizable moment.
两个强有力的论据支持磁场驱动的非常规超导性,一方面是由于超导相与磁有序相的共存和接近,另一方面是由于在超导转变时出现了磁自旋共振模式。将这两个论点结合起来,人们可能会问到在反铁磁态中发生的超导自旋共振模式的性质。这个问题可以在欠掺杂 BaFe As 中进行研究,局部探针已经很好地证明了局部大磁矩反铁磁序与超导性的共存。然而,需要极化中子散射实验来确定共振模式的性质。在 Co 欠掺杂 BaFe As 的正常态下,反铁磁序导致所有三个自旋方向的磁隙打开,这让人想起母体化合物中的磁响应。在超导态下,出现了两个明显的各向异性共振激发,但与对最佳掺杂和过掺杂 BaFe As 的众多研究不同,没有各向同性共振激发。在反铁磁相中出现的两个各向异性共振模式归因于带选择性超导态,其中纵向磁激发被反铁磁序的大磁矩所隙。