论文标题
散装范德华分层磁铁CRSBR是一种准1D材料
The bulk van der Waals layered magnet CrSBr is a quasi-1D material
论文作者
论文摘要
表现出竞争电子和磁性的一维(1D)系统中的相关量子现象对于研究基本相互作用和兴奋感具有浓厚的兴趣,例如tomonaga-luttinger液体以及拓扑顺序以及拓扑顺序和缺陷与与其在其更高维度的QuaSipartics中完全不同的属性。但是,清洁的一维电子系统难以实验实现,尤其是磁有序的系统。在这里,我们表明范德华分层的磁性半导体CRSBR的行为就像嵌入磁有序环境中的准1D材料。强的1D电子特征来自CR-S链以及有效质量和介电筛选中弱层间杂交和各向异性的组合,有效的电子质量比为$ M^e_x/m^e_y \ sim 50 $。这种极端的各向异性在实验上表现出强烈的电子音波和激子相互作用,类似PEIERLS的结构不稳定性以及来自金属碳纳米管具有相似强度的Van Hove奇异性的FANO共振。此外,由于尺寸降低和层间耦合,CRSBR宿主在继承1D字符的高结合能和振荡器强度的频谱狭窄(1 MeV)激子。总体而言,最好将CRSBR理解为弱杂交单层的一堆,并且似乎是研究外来激发激素和1D在磁性存在下相关的多体物理学的实验吸引力的候选者。
Correlated quantum phenomena in one-dimensional (1D) systems that exhibit competing electronic and magnetic order are of strong interest for studying fundamental interactions and excitations, such as Tomonaga-Luttinger liquids and topological orders and defects with properties completely different from the quasiparticles expected in their higher-dimensional counterparts. However, clean 1D electronic systems are difficult to realize experimentally, particularly magnetically ordered systems. Here, we show that the van der Waals layered magnetic semiconductor CrSBr behaves like a quasi-1D material embedded in a magnetically ordered environment. The strong 1D electronic character originates from the Cr-S chains and the combination of weak interlayer hybridization and anisotropy in effective mass and dielectric screening with an effective electron mass ratio of $m^e_X/m^e_Y \sim 50$. This extreme anisotropy experimentally manifests in strong electron-phonon and exciton-phonon interactions, a Peierls-like structural instability and a Fano resonance from a van Hove singularity of similar strength of metallic carbon nanotubes. Moreover, due to the reduced dimensionality and interlayer coupling, CrSBr hosts spectrally narrow (1 meV) excitons of high binding energy and oscillator strength that inherit the 1D character. Overall, CrSBr is best understood as a stack of weakly hybridized monolayers and appears to be an experimentally attractive candidate for the study of exotic exciton and 1D correlated many-body physics in the presence of magnetic order.