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Subgap spectroscopy of thermally excited quasiparticles in a Nb-contacted carbon nanotube quantum dot

机译:Nb接触碳纳米管量子点中热激发的准粒子的亚带能谱

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摘要

We present electronic transport measurements of a single wall carbon nanotube quantum dot coupled to Nb superconducting contacts. For temperatures comparable to the superconducting gap, peculiar transport features are observed inside the Coulomb blockade and superconducting energy gap regions. The observed temperature dependence can be explained in terms of sequential tunneling processes involving thermally excited quasiparticles. In particular, these channels give rise to two unusual conductance peaks at zero bias in the vicinity of the charge degeneracy point and allow one to determine the degeneracy of the ground states involved in transport. The measurements are in good agreement with model calculations.
机译:我们提出耦合到Nb超导接触的单壁碳纳米管量子点的电子传输测量。对于与超导间隙相当的温度,在库仑阻塞和超导能隙区域内观察到特殊的传输特征。观察到的温度依赖性可以用涉及热激发的准粒子的顺序隧穿过程来解释。特别是,这些通道在电荷简并点附近在零偏压处产生两个异常的电导峰,并允许一个人确定与传输有关的基态的简并。测量结果与模型计算非常吻合。

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