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Experimental determination of conduction channels in atomic-scale conductors based on shot noise measurements

机译:基于散粒噪声测量的原子级导体中传导通道的实验确定

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We demonstrate a general procedure for determining the conduction channels of quantum conductors from shot noise measurements. This numerical approach allows multichannel analysis which was previously limited to superconductors. Channel analysis of Ag and Au atomic contacts reveals a remarkable behavior in which the channels fully open one by one with increasing conductance. These results allow us to unambiguously distinguish between free-electron and tight-binding descriptions for the conductance of monovalent contacts. Furthermore, the channel resolution uncovers the presence of tunneling channels in parallel to the conductance through the main contact and provides a means for distinguishing between the contact conductance and tunneling contributions. Finally, unique channel distributions were found for Al and Pt contacts reflecting their distinct valence orbital structures.
机译:我们演示了从散粒噪声测量中确定量子导体的传导通道的一般程序。这种数值方法允许进行以前仅限于超导体的多通道分析。 Ag和Au原子接触的通道分析揭示了一种显着的行为,其中通道随着电导的增加而完全打开。这些结果使我们能够明确地区分单价接触电导的自由电子描述和紧密结合描述。此外,通道分辨率揭示了与通过主触点的电导平行的隧穿通道的存在,并提供了一种用于区分接触电导和隧穿贡献的手段。最后,发现了Al和Pt接触的独特通道分布,反映了它们独特的价轨道结构。

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