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Kondo effect by controlled cleavage of a single-molecule contact

机译:通过控制单分子接触的裂解获得近藤效应

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Conductance measurements of a molecular wire, contacted between an epitaxial molecule-metal bond and the tip of a scanning tunnelling microscope, are reported. Controlled retraction of the tip gradually de-hybridizes the molecule from the metal substrate. This tunes the wire into the Kondo regime in which the renormalized molecular transport orbital serves as a spin impurity at half-filling and the Kondo resonance opens up an additional transport channel. Numerical renormalization group simulations suggest this type of behaviour to be generic for a common class of metal-molecule bonds. The results demonstrate a new approach to single-molecule experiments with atomic-scale contact control and prepare the way for the ab initio simulation of many-body transport through single-molecule junctions.
机译:报道了在外延分子-金属键和扫描隧道显微镜的尖端之间接触的分子线的电导率测量。尖端的受控缩回逐渐使分子脱离了金属基底。这将导线调整到近藤状态,其中重新规范化的分子传输轨道在半填充时充当自旋杂质,而近藤共振则打开了另一个传输通道。数值重整化组模拟表明,这种行为对于一类常见的金属分子键是通用的。结果证明了一种采用原子尺度接触控制的单分子实验的新方法,并为从头开始模拟通过单分子连接的多体运输提供了方法。

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