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Discrete energy levels of Caroli-de Gennes-Matricon states in quantum limit in FeTe0.55Se0.45

机译:FeTe0.55Se0.45中量子极限中Caroli-de Gennes-Matricon态的离散能级

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摘要

Caroli-de Gennes-Matricon (CdGM) states were predicted in 1964 as low-energy excitations within vortex cores of type-II superconductors. In the quantum limit, the energy levels of these states were predicted to be discrete with the basic levels at ±μΔ2/EF (μ = 1/2, 3/2, 5/2, …) with Δ the superconducting energy gap and EF the Fermi energy. However, due to the small ratio of Δ/EF in most type-II superconductors, it is very difficult to observe the discrete CdGM states, but rather a symmetric peak which appears at zero bias at the vortex center. Here we report the clear observation of these discrete energy levels of CdGM states in FeTe0.55Se0.45. The rather stable energies of these bound state peaks vs. space clearly validate our conclusion. Analysis based on the energies of these CdGM states indicates that the Fermi energy in the present system is very small.
机译:1964年,Caroli-de Gennes-Matricon(CdGM)状态被预测为II型超导体涡旋核内的低能激发。在量子极限中,这些状态的能级被预测为离散,基本能级为±μΔ 2 / EF(μ= 1/2,3/2,5/2,…) Δ为超导能隙,EF为费米能。但是,由于在大多数II型超导体中Δ/ EF的比值很小,很难观察到离散的CdGM状态,而是观察到对称峰,该对称峰出现在涡旋中心的零偏压处。在这里,我们报告清楚地观察到FeTe0.55Se0.45中CdGM状态的这些离散能级。这些束缚态峰相对于空间的相当稳定的能量清楚地证实了我们的结论。基于这些CdGM状态的能量的分析表明,本系统中的费米能量非常小。

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