论文标题
基于双层铁的超导体CAK中的首选自旋激发(fe $ _ {0.96} $ ni $ _ {0.04} $)$ _ 4 $ as 4 $ as $ _4 $带有Spin-Vortex Crystal订单
Preferred Spin Excitations in the Bilayer Iron-Based Superconductor CaK(Fe$_{0.96}$Ni$_{0.04}$)$_4$As$_4$ with Spin-Vortex Crystal Order
论文作者
论文摘要
自旋轨道耦合(SOC)是了解磁性超导体中磁驱动的超导性的关键,那里存在局部和巡回电子,并且轨道角动量尚未完全消退。在这里,我们报告了一项关于双层化合物CAK的中子散射研究(Fe $ _ {0.96} $ ni $ _ {0.04} $)$ _ 4 $ as 4 $ as $ _4 $,具有超导性的超导性共存,并与非collinearear spin-vortex crystal磁性订单合作,可保留Fe-fe-fe-fe-fe-fe-fe-fe-fe-fe-fe-fe-fe-fe-fe-fe-fe-fe-fe-fe。在超导状态下,由于双层耦合而导致的两种具有奇数甚至$ l $对称性的旋转共振模式类似于$ _4 $的未掺杂化合物Cakfe $ _4 $,但在较低的能量处。极化分析表明,奇数模式为$ c- $轴极化,低能量自旋各向异性可以在高温下持续到顺磁相,在高温下,与其他平面界线和$ c- $ axis双轴磁序相似的其他系统。这些结果为铁刺剂超导体中的SOC效应提供了缺少的难题,并且在$ c- $轴首选磁性激发$ t_c $下方的常见图片中,无论磁性模式或晶格对称性的细节如何。
The spin-orbit coupling (SOC) is a key to understand the magnetically driven superconductivity in iron-based superconductors, where both local and itinerant electrons are present and the orbital angular momentum is not completely quenched. Here, we report a neutron scattering study on the bilayer compound CaK(Fe$_{0.96}$Ni$_{0.04}$)$_4$As$_4$ with superconductivity coexisting with a non-collinear spin-vortex crystal magnetic order that preserves the tetragonal symmetry of Fe-Fe plane. In the superconducting state, two spin resonance modes with odd and even $L$ symmetries due to the bilayer coupling are found similar to the undoped compound CaKFe$_4$As$_4$ but at lower energies. Polarization analysis reveals that the odd mode is $c-$axis polarized, and the low-energy spin anisotropy can persist to the paramagnetic phase at high temperature, which closely resembles other systems with in-plane collinear and $c-$axis biaxial magnetic orders. These results provide the missing piece of the puzzle on the SOC effect in iron-pnictide superconductors, and also establish a common picture of $c-$axis preferred magnetic excitations below $T_c$ regardless of the details of magnetic pattern or lattice symmetry.