The electronic structure of a doped Mott-Hubbard surface
arXiv:2506.19682 · doi:10.1103/ry9v-47x2
Abstract
The Sn/Si(111)-({\sqrt}3{\times}{\sqrt}3)R30° surface, a 2D Mott insulator, has long been predicted and then found experimetally to metallize and even turn superconducting upon boron doping. In order to clarify the structural, spectroscopic and theoretical details of that evolution, here we present ARPES data supplementing morphology and scanning tunneling measurements. These combined experimental results are compared with predictions from a variety of electronic structure approaches, mostly density functional DFT+U, but not neglecting Mott-Hubbard models, both ordered and disordered. These theoretical pictures address different spectroscopic aspects, including the 2D Fermi surface, the Hubbard bands, etc. While no single picture account for all observations at once,the emergent hypothesis compatible with all data is that metallization arises from sub-subsurface boron doping, additional to the main standard subsurface boron geometry, that would leave the surface insulating. These results advance the indispensable frame for the further understanding of this fascinating system.
20 pages, 21 figures
References in corpus (19)
- Quantum ESPRESSO: a modular and open-source software project for quantum simulations of materials
- Restoring the density-gradient expansion for exchange in solids and surfaces
- Generalized gradient approximation for solids and their surfaces
- Advanced capabilities for materials modelling with Quantum ESPRESSO
- Quantum ESPRESSO toward the exascale
- The Hubbard model on the triangular lattice: Spiral order and spin liquid
- Triangular Mott-Hubbard Insulator Phases of Sn/Si(111) and Sn/Ge(111) Surfaces
- Realization of a hole-doped Mott insulator on a triangular silicon lattice
- Evidence for chiral superconductivity on a silicon surface
- Superconductivity in a hole-doped Mott-insulating triangular adatom layer on a silicon surface
- Triplet Superconductivity from Nonlocal Coulomb Repulsion in an Atomic Sn Layer Deposited onto a Si(111) Substrate
- Spin-orbit coupling and magnetic interactions in Si(111):{C,Si,Sn,Pb}
- Low-Temperature Insulating Phase of the Si(111)--77 Surface
- Doped Mott phase and charge correlations in monolayer 1T-NbSe
- Charge density wave in single-layer Pb/Ge(111) driven by Pb-substrate exchange interaction
- Experimental observation of pseudogap in a modulation-doped Mott insulator: Sn/Si(111)-()-R30
- Superconductivity near the saddle point in the two-dimensional Rashba system Si(111)--(Tl,Pb)
- Magnetism and superconductivity in doped triangular-lattice Mott insulators
- Electronic structure, spin-orbit interaction and electron-phonon coupling of triangular adatom lattices on semiconductor substrates