论文标题
二维围质晶格中基态连贯性的证据
Evidence for ground state coherence in a two-dimensional Kondo lattice
论文作者
论文摘要
Kondo Lattices是探索物质重的量子阶段的理想测试床。尽管我们对Kondo Lattices的理解传统上依赖于复杂的散装F-电子系统,但过渡金属二甲藻元化杂质者最近出现了简单,可访问和可调的2D Kondo Lattice Platforms,但是,在这里,它们的基态仍有待确定。在这里,我们通过扫描340 MK的隧道显微镜/光谱法扫描隧道显微镜/光谱,在1T/1H-Tase2杂波中提供了相干基态的证据。我们的测量结果揭示了Fermi Energy周围存在两个对称电子共振,这是自旋晶格中连贯性的标志。光谱成像位于1T相的电荷密度波的中央ta原子(其中固定磁矩)的中央塔原子。此外,用磁场的电子结构的演变揭示了电子共振之间的能量分离的非线性增加。在从头静止和辅助 - 弗里尔术的平均场计算的帮助下,我们证明了这种行为与完全筛选的亲托晶格不一致,并建议通过传导电子介导的磁序的基态。基于TMD的2D Kondo Lattices中磁相干性的表现,可以探索磁量子关键性,近托分解过渡和非常规超导性的严格二维极限。
Kondo lattices are ideal testbeds for the exploration of heavy-fermion quantum phases of matter. While our understanding of Kondo lattices has traditionally relied on complex bulk f-electron systems, transition metal dichalcogenide heterobilayers have recently emerged as simple, accessible and tunable 2D Kondo lattice platforms where, however, their ground state remains to be established. Here we present evidence of a coherent ground state in the 1T/1H-TaSe2 heterobilayer by means of scanning tunneling microscopy/spectroscopy at 340 mK. Our measurements reveal the existence of two symmetric electronic resonances around the Fermi energy, a hallmark of coherence in the spin lattice. Spectroscopic imaging locates both resonances at the central Ta atom of the charge density wave of the 1T phase, where the localized magnetic moment is held. Furthermore, the evolution of the electronic structure with the magnetic field reveals a non-linear increase of the energy separation between the electronic resonances. Aided by ab initio and auxiliary-fermion mean-field calculations, we demonstrate that this behavior is inconsistent with a fully screened Kondo lattice, and suggests a ground state with magnetic order mediated by conduction electrons. The manifestation of magnetic coherence in TMD-based 2D Kondo lattices enables the exploration of magnetic quantum criticality, Kondo breakdown transitions and unconventional superconductivity in the strict two-dimensional limit.