Logo image
Fabrication and Imaging Monatomic Ni Kagome Lattice on Superconducting Pb(111)
期刊文章   同儕審查

Fabrication and Imaging Monatomic Ni Kagome Lattice on Superconducting Pb(111)

Yen-Hui Lin, Chia-Ju Chen, Nitin Kumar, Ta-Yu Yeh, Tzu-Hsuan Lin, Stefan Blügel, Gustav BihlmayerPin-Jui Hsu
Nano Letters, 卷.22(21), 頁碼.8475-8481
11/2022
PMID: 36282025

摘要

asymmetric edge scattering density functional theory monatomic Ni Kagome lattice sawtooth edge structure scanning tunneling spectroscopy superconducting proximity effect Bioengineering Chemistry (all) Materials Science (all) Condensed Matter Physics Mechanical Engineering
Artificial fabrication of a monolayer Kagome material can offer a promising opportunity to explore exceptional quantum states and phenomena in low dimensionality. Here, we have systematically studied a monatomic Ni Kagome lattice grown on Pb(111) by scanning tunneling microscopy/spectroscopy (STM/STS) and density functional theory (DFT). Sawtooth edge structures with distinct heights due to subsurface Ni atoms have been revealed, leading to asymmetric edge scattering of surface electrons on Pb(111). In addition, a local maximum at about -0.2 eV in tunneling spectra represents a manifestation of characteristic phase-destructive flat bands. Although charge transfer from underlying Pb(111) substrate results in a vanishing magnetic moment of Ni atoms, the proximity-induced superconducting gap is slightly enhanced on the Ni Kagome lattice. In light of single-atomic-layer Ni Kagome lattice on superconducting Pb(111) substrate, it could serve as an ideal platform to investigate the interplay between Kagome physics and superconductivity down to the two-dimensional limit.

相關連結

指標

1 檢視次數

詳細資料

Logo image