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Scaling of Yu-Shiba-Rusinov energies in the weak-coupling Kondo regime

机译:弱耦合近藤政权中Yu-Shiba-Rusinov能量的缩放

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The competition of the free-spin state of a paramagnetic impurity on a superconductor with its screened counterpart is characterized by the energy scale of Kondo screening compared to the superconducting pairing energy Δ. When the experimental temperature suppresses Kondo screening, but preserves superconductivity, i.e., when Δ/k B??T??T K (k B is Boltzmann’s constant and T K the Kondo temperature), this description fails. Here, we explore this temperature range in a set of manganese phthalocyanine molecules decorated with ammonia on Pb(111). We show that these molecules suffice the required energy conditions by exhibiting weak-coupling Kondo resonances. We correlate the Yu-Shiba-Rusinov bound states energy inside the superconducting gap with the intensity of the Kondo resonance. The observed correlation follows the expectations for a classical spin on a superconductor. This finding is important in view of many theoretical predictions using a classical spin model, in particular for the description of Majorana bound states in magnetic nanostructures on superconducting substrates.
机译:超导体上的顺磁性杂质的自由旋转状态与其被筛选的对应物之间的竞争以近藤筛选的能量规模与超导配对能量Δ的竞争为特征。当实验温度抑制近藤屏蔽但保留超导性时,即当Δ/ k B2>ΔTα>ΔTK(k B是玻尔兹曼常数,T K是近藤温度)时,该描述将失败。在这里,我们探索了一组在Pb(111)上用氨装饰的锰酞菁分子的温度范围。我们显示这些分子通过展示弱耦合的近藤共振来满足所需的能量条件。我们将超导间隙内的Yu-Shiba-Rusinov束缚态能量与Kondo共振强度相关联。观察到的相关性符合超导体经典自旋的期望。考虑到使用经典自旋模型进行的许多理论预测,这一发现非常重要,特别是对于超导衬底上磁性纳米结构中的马约拉纳键态的描述。

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