Fan Kai, Jin Heng, Huang Bing, Duan Guijing, Yu Rong, Liu Zhen-Yu, Xia Hui-Nan, Liu Li-Si, Zhang Yao, Xie Tao, Tang Qiao-Yin, Chen Gang, Zhang Wen-Hao, Chen F C, Luo X, Lu W J, Sun Y P, Fu Ying-Shuang
School of Physics and Wuhan National High Magnetic Field Center, Huazhong University of Science and Technology, Wuhan, 430074, China.
School of Physics and Astronomy, Beijing Normal University, Beijing, 100875, China.
Nat Commun. 2024 Oct 11;15(1):8797. doi: 10.1038/s41467-024-53166-9.
Engineering Kondo lattice with tailored functionality is desirable for elucidating the heavy fermion physics. We realize the construction of an artificial Kondo lattice/superconductor heterojunction by growing monolayer VSe on bulk 2H-NbSe with molecular beam epitaxy. Spectroscopic imaging scanning tunneling microscopy measurements show the emergence of a new charge density wave (CDW) phase with periodicity on the monolayer VSe. Unexpectedly, a pronounced Kondo resonance appears around the Fermi level, and distributes uniformly over the entire film, evidencing the formation of Kondo lattice. Density functional theory calculations suggest the existence of magnetic interstitial V atoms in VSe/NbSe, which play a key role in forming the CDW phase along with the Kondo lattice observed in VSe. The Kondo origin is verified from both the magnetic field and temperature dependences of the resonance peak, yielding a Kondo temperature of ~ 44 K. Moreover, a superconducting proximity gap opens on monolayer VSe, whose shape deviates from the function of one-band BCS superconductor, but is reproduced by model calculations with heavy electrons participating the pairing condensate. Our work lays the experimental foundation for studying interactions between the heavy fermion liquids and the superconducting condensate.
构建具有定制功能的近藤晶格对于阐明重费米子物理现象是很有必要的。我们通过分子束外延在块状2H-NbSe₂上生长单层VSe₂实现了人工近藤晶格/超导体异质结的构建。光谱成像扫描隧道显微镜测量表明,在单层VSe₂上出现了一种具有特定周期性的新电荷密度波(CDW)相。出乎意料的是,在费米能级附近出现了明显的近藤共振,并且在整个薄膜上均匀分布,这证明了近藤晶格的形成。密度泛函理论计算表明,在VSe₂/NbSe₂中存在磁性间隙V原子,它们在形成CDW相以及在VSe₂中观察到的近藤晶格方面起着关键作用。从共振峰的磁场和温度依赖性验证了近藤起源,得出近藤温度约为44 K。此外,在单层VSe₂上打开了一个超导邻近能隙,其形状偏离了单带BCS超导体的函数,但通过重电子参与配对凝聚的模型计算得以重现。我们的工作为研究重费米子液体与超导凝聚体之间的相互作用奠定了实验基础。