论文标题
kagome金属cosn1-xinx中的平坦巡回抗铁磁性
Flat-Band Itinerant Antiferromagnetism in the Kagome Metal CoSn1-xInx
论文作者
论文摘要
沮丧的kagome晶格上电子跳跃的破坏性干扰会在电子结构中产生越野节点,鞍点和平坦带。后者提供了狭窄的带和状态密度的峰,当费米级别位于其中时,可以产生相关的电子行为。在Kagome Metal COSN中,没有实现这种比对,并且该化合物是Pauli paramagnet。在这里,我们表明,用辅助(COSN1-XINX)代替锡的一部分,将费米能量移至平坦带区域,并在带结构计算,热容量测量和角度分辨的光发射光谱的支持下将其移动到平坦的带区域。相关的不稳定性导致巡回反铁磁性的出现,尿素温度高达30K。远程磁性阶通过中子衍射测量确认,这表明每CO的有序磁矩为0.1-0.2 bohr磁铁(x = 0.4)。因此,COSN1-Xinx提供了一个罕见的例子,它具有较小的有序力矩的巡回反铁磁铁。这项工作提供了明确的证据表明,散装晶体中沮丧的晶格产生的平坦带代表了通往新物理的可行途径,在这里,在将非磁性掺杂剂引入非磁性kagome金属中时,磁性顺序的出现证明了这一点。
Destructive interference of electron hopping on the frustrated kagome lattice generates Dirac nodes, saddle points, and flat bands in the electronic structure. The latter provides the narrow bands and a peak in the density of states that can generate correlated electron behavior when the Fermi level lies within them. In the kagome metal CoSn, this alignment is not realized, and the compound is a Pauli paramagnet. Here we show that replacing part of the tin with indium (CoSn1-xInx) moves the Fermi energy into the flat band region, with support from band structure calculations, heat capacity measurements, and angle resolved photoemission spectroscopy. The associated instability results in the emergence of itinerant antiferromagnetism with a Neel temperature up to 30K. Long range magnetic order is confirmed by neutron diffraction measurements, which indicate an ordered magnetic moment of 0.1-0.2 Bohr magnetons per Co (for x = 0.4). Thus, CoSn1-xInx provides a rare example of an itinerant antiferromagnet with a small ordered moment. This work provides clear evidence that flat bands arising from frustrated lattices in bulk crystals represent a viable route to new physics, evidenced here by the emergence of magnetic order upon introducing a non-magnetic dopant into a non-magnetic kagome metal.