论文标题

在MNTE/BI2TE3/FE(TE,SE)的三层异质结构中观察强大的零能状态和增强的超导差距

Observation of robust zero-energy state and enhanced superconducting gap in a tri-layer heterostructure of MnTe/Bi2Te3/Fe(Te, Se)

论文作者

Ding, Shuyue, Chen, Chen, Cao, Zhipeng, Wang, Di, Pan, Yongqiang, Tao, Ran, Zhao, Dongming, Hu, Yining, Jiang, Tianxing, Yan, Yajun, Shi, Zhixiang, Wan, Xiangang, Feng, Donglai, Zhang, Tong

论文摘要

长期以来,磁性材料和超导体之间的界面已被预测为具有非常规的超导性,例如自旋三型配对和拓扑非平凡配对状态,尤其是当旋转轨道耦合(SOC)纳入时。为了识别这些新型的配对状态,可以优选包含各种特性的同质异质结构,但通常具有挑战性。在这里,我们合成了MNTE/BI2TE3/Fe(TE,SE)的三层型Van-waals异质结构,该结构结合了S波超导性,依赖厚度的磁性和强烈的SOC。通过低温扫描隧道显微镜(STM),我们观察到具有明显非平凡特性的稳健零能量状态,并且在单个单位细胞(UC)MNTE表面上具有增强的超导间隙大小。相比之下,在2uc MNTE上未观察到零能量。第一原则计算进一步表明1UC MNTE具有较大的界面Dzyaloshinskii-Moriya相互作用(DMI)和沮丧的AFM状态,可以促进非类别的自旋纹理。因此,它为探索拓扑非平凡的超导性提供了一个有希望的平台。

The interface between magnetic material and superconductors has long been predicted to host unconventional superconductivity, such as spin-triplet pairing and topological nontrivial pairing state, particularly when spin-orbital coupling (SOC) is incorporated. To identify these novel pairing states, fabricating homogenous heterostructures which contain such various properties are preferred, but often challenging. Here we synthesized a tri-layer type van-der Waals heterostructure of MnTe/Bi2Te3/Fe(Te, Se), which combined s-wave superconductivity, thickness dependent magnetism and strong SOC. Via low-temperature scanning tunneling microscopy (STM), we observed robust zero-energy states with notably nontrivial properties and an enhanced superconducting gap size on single unit-cell (UC) MnTe surface. In contrast, no zero-energy state was observed on 2UC MnTe. First-principle calculations further suggest the 1UC MnTe has large interfacial Dzyaloshinskii-Moriya interaction (DMI) and a frustrated AFM state, which could promote non-collinear spin textures. It thus provides a promising platform for exploring topological nontrivial superconductivity.

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