论文标题

Quasi One维kmn6bi5中的自旋和电荷密度波

Spin and charge density waves in the quasi-one-dimensional KMn6Bi5

论文作者

Bao, Jin-Ke, Cao, Huibo, Krogstad, Matthew J., Taddei, Keith M., Shi, Chenfei, Cao, Shixun, Lapidus, Saul H., van Smaalen, Sander, Chung, Duck Young, Kanatzidis, Mercouri G., Rosenkranz, Stephan, Chmaissem, Omar

论文摘要

AMN6BI5材料(A = NA,K,RB和CS)由独特的MN簇链组成,成为一个新的超导体系列,并在高压下抑制了其抗磁性(AFM)秩序。在这里,我们报告了沿链轴的横向不相称的旋转密度波(SDW),该原子沿链轴传播方向是单晶中子衍射作为KMN6BI5的基态。 SDW的MN原子的精制幅度约为2.46 BOHR Magneton,〜0.29 Bohr Magnetons具有较大的Mn原子的pentematons,pentagons中心的Mn原子具有较大的标准偏差。 AFM在五角大楼(沿繁殖波)中占据了五角大楼中最近的邻居MN-MN相互作用。 SDWS表现出局部和巡回特性,可能是由于局部磁交换和传导电子之间的合作相互作用而形成的。在AFM过渡期间,尤其是沿链方向的明显磁弹性效应已通过温度依赖性X射线粉末衍射证明。 AFM过渡下方的单晶X射线衍射揭示了沿链方向的电荷密度波,Q矢量的卫星峰,其Q矢量是SDW One的两倍,指向它们之间的强大空间耦合。我们的工作不仅体现了自旋,电荷,晶格和一个维度之间的引人入胜的相互作用,以触发kmn6bi5中的互相交织顺序,而且还为父母化合物的磁性结构提供了重要的信息,以了解这个新家族中超导性的机制。

AMn6Bi5 materials (A = Na, K, Rb and Cs) consisting of unique Mn-cluster chains emerge as a new family of superconductors with the suppression of their antiferromagnetic (AFM) order under high pressures. Here, we report transverse incommensurate spin density waves (SDWs) for the Mn atoms with a propagating direction along the chain axes as a ground state for KMn6Bi5 by single crystal neutron diffraction. The SDWs have a refined amplitude of ~2.46 Bohr magnetons for the Mn atoms in the pentagons and ~0.29 Bohr magnetons with a large standard deviation for Mn atoms in the center between the pentagons. AFM dominate both the nearest-neighbor Mn-Mn interactions within the pentagon and next-nearest-neighbor Mn-Mn interactions out of the pentagon (along the propagating wave). The SDWs exhibit both local and itinerant characteristics probably formed by a cooperative interaction between local magnetic exchange and conduction electrons. A significant magnetoelastic effect during the AFM transition, especially along the chain direction, has been demonstrated by temperature-dependent x-ray powder diffraction. Single crystal x-ray diffraction below the AFM transition revealed satellite peaks originating from charge density waves along the chain direction with a q-vector twice as large as the SDW one, pointing to a strong real space coupling between them. Our work not only manifests a fascinating interplay among spin, charge, lattice and one dimensionality to trigger intertwined orders in KMn6Bi5 but also provides important piece of information for the magnetic structure of the parent compound to understand the mechanism of superconductivity in this new family.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源