Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5366414 | Applied Surface Science | 2007 | 5 Pages |
Coverage-dependent adsorption energy of the Ge/Ru(0Â 0Â 0Â 1) growth system and the geometrical distortions of the most stable adsorption structure are investigated through first-principles calculations within density functional theory. A local minimum in adsorption energy is found to be at a Ge coverage of 1/7 monolayer with a Ru(0Â 0Â 0Â 1)-21Ã21-3Ge symmetry. Based on this stale superstructure, the scanning tunneling microscopy (STM) and scanning tunneling spectroscopy (STS) images are simulated by means of surface local-density of states (LDOS). The results are consistent well with the STM measurements on the 21Ã21 phase for Ge overlayer on Ru(0Â 0Â 0Â 1). From this stimulation, the relations between the STM images and the lattice distortion are also clarified.