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在MnTe/BiTe/Fe(Te, Se)三层异质结构中对稳健零能态和增强超导能隙的观测

Observation of robust zero-energy state and enhanced superconducting gap in a trilayer heterostructure of MnTe/BiTe/Fe(Te, Se).

作者信息

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

机构信息

Department of Physics, State Key Laboratory of Surface Physics and Advanced Material Laboratory, Fudan University, Shanghai 200438, China.

National Laboratory of Solid State Microstructures and School of Physics, Nanjing University, Nanjing 210093, China.

出版信息

Sci Adv. 2022 Sep 16;8(37):eabq4578. doi: 10.1126/sciadv.abq4578. Epub 2022 Sep 14.

Abstract

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 unconventional pairing states, fabricating homogenous heterostructures that contain such various properties are preferred but often challenging. Here, we synthesized a trilayer-type van der Waals heterostructure of MnTe/BiTe/Fe(Te, Se), which combined s-wave superconductivity, thickness-dependent magnetism, and strong SOC. Via low-temperature scanning tunneling microscopy, 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 2-UC MnTe. First-principle calculations further suggest that the 1-UC MnTe has large interfacial Dzyaloshinskii-Moriya interaction and a frustrated AFM state, which could promote noncolinear spin textures. It thus provides a promising platform for exploring topological nontrivial superconductivity.

摘要

长期以来,人们一直预测磁性材料与超导体之间的界面会呈现非常规超导性,比如自旋三重态配对和拓扑非平凡配对态,尤其是在引入自旋轨道耦合(SOC)的情况下。为了识别这些非常规配对态,制备包含各种此类特性的均匀异质结构是优选方案,但往往具有挑战性。在此,我们合成了一种MnTe/BiTe/Fe(Te, Se)的三层型范德华异质结构,它兼具s波超导性、厚度依赖磁性和强SOC。通过低温扫描隧道显微镜,我们在单胞(UC)MnTe表面观察到了具有显著非平凡特性的稳健零能态以及增强的超导能隙大小。相比之下,在2-UC MnTe上未观察到零能态。第一性原理计算进一步表明,1-UC MnTe具有较大的界面Dzyaloshinskii-Moriya相互作用和受挫反铁磁态,这可能会促进非共线自旋纹理。因此,它为探索拓扑非平凡超导性提供了一个有前景的平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ed74/9473575/750a831733f3/sciadv.abq4578-f1.jpg

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