Antiferromagnetic superexchange mediated by a resonant surface state in Sn/Si(111)

  • Lee, Jun-Ho
  • Ren, Xiao-Yan
  • Jia, Yu
  • Cho, Jun-Hyung
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초록

The Sn overlayer on the Si(111) surface has been considered as a prototypical system for exploring two-dimensional (2D) correlated physics on the triangular lattice. Most of the previous theoretical studies were based on the presumption that the surface state dominantly originates from Sn dangling-bond (DB) electrons, leading to a strongly correlated 2D electronic system. By contrast, our density-functional theory calculations show that the Sn DB state significantly hybridizes with Si substrate states to form a resonant state. The strong resonance between the Sn 5p(z) and Si 3p(z) orbitals facilitates the recently observed antiferromagnetic order through superexchange interactions, giving rise to a band-gap opening. It is thus demonstrated that the insulating ground state of Sn/Si(111) can be characterized as a Slater-type insulator via band magnetism.

키워드

CHARGE-DENSITY-WAVEQUANTUM SPIN LIQUIDELECTRON CORRELATIONSUPERCONDUCTIVITYROOT-3R30-DEGREESSEMICONDUCTORS
제목
Antiferromagnetic superexchange mediated by a resonant surface state in Sn/Si(111)
저자
Lee, Jun-HoRen, Xiao-YanJia, YuCho, Jun-Hyung
DOI
10.1103/PhysRevB.90.125439
발행일
2014-09
유형
Article
저널명
Physical Review B - Condensed Matter and Materials Physics
90
12
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1 ~ 5