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Real space manifestations of coherent screening in atomic scale Kondo lattices

机译:原子尺度的近藤格子中相干筛选的真实空间表现

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The interaction among magnetic moments screened by conduction electrons drives quantum phase transitions between magnetically ordered and heavy-fermion ground states. Here, starting from isolated magnetic impurities in the Kondo regime, we investigate the formation of the finite size analogue of a heavy Fermi liquid. We build regularly-spaced chains of Co adatoms on a metallic surface by atomic manipulation. Scanning tunneling spectroscopy is used to obtain maps of the Kondo resonance intensity with sub-atomic resolution. For sufficiently small interatomic separation, the spatial distribution of Kondo screening does not coincide with the position of the adatoms. It also develops enhancements at both edges of the chains. Since we can rule out any other interaction between Kondo impurities, this is explained in terms of the indirect hybridization of the Kondo orbitals mediated by a coherent electron gas, the mechanism that causes the emergence of heavy quasiparticles in the thermodynamic limit.
机译:传导电子屏蔽的磁矩之间的相互作用驱动了磁有序态和重费米子基态之间的量子相变。在这里,从近藤政权中孤立的磁性杂质开始,我们研究了重费米液体的有限尺寸类似物的形成。我们通过原子操纵在金属表面上构建规则排列的Co原子链。扫描隧道光谱法用于获得具有亚原子分辨率的近藤共振强度图。对于足够小的原子间分离,近藤筛选的空间分布与吸附原子的位置不一致。它还在链的两个边缘都进行了增强。由于我们可以排除近藤杂质之间的任何其他相互作用,因此可以通过相干电子气介导的近藤轨道间接杂交来解释,这是在热力学极限内导致重的准粒子出现的机理。

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