Broken site symmetry of Fe adatoms on BiTe
arXiv:2608.02770
Abstract
We report a combined scanning tunneling microscopy and atomistic theoretical study of Fe adatoms on the BiTe(111) surface. Topographic imaging at ~K shows that Fe adatoms in fcc and hcp hollow sites exhibit a threefold-symmetric contrast, consistent with the symmetry of the adsorption site. However, simultaneously acquired differential conductance () maps reveal a pronounced reduction in symmetry, evidenced by differential contrast observed at nearest-neighbor Te sites. Density functional theory calculations show that the Fe/BiTe system undergoes a static Jahn--Teller distortion, reducing the adsorption symmetry from to , with the distorted configuration favored by ~meV. Orbital-projected density of states calculations show that the occupied states near the Fermi level are dominated by and orbitals, whereas the unoccupied states are primarily of , , and character. The local density of states from these orbitals is in good qualitative agreement with experimental spectra. Furthermore, simulated local-density-of-states maps using a tight-binding Green's function approach are consistent with experimental maps, confirming that the reduced symmetry originates from the structural distortion.
7 pages, 5 figures