We report new findings on multilayer silicene grown on Si(111)?3 ×?3 R30o-Ag template, after the recent first compelling experimental evidence of its synthesis. Low-energy electrondiffraction, reflection high-energy electron diffraction, and energy-dispersive grazing incidence X-ray diffraction measurements were performed to show up the fingerprints of ?3 ×?3 multilayer silicene. Angle-resolved photoemission spectroscopy displayed new features in the second surface Brillouin zone, attributed to the multilayer silicene on Si(111)?3 ×?3 R30o-Ag. Band-structure dispersion theoretical calculations performed on a model of three honeycomb stacked layers, silicene grown on Si(111)?3 ×?3 R30o-Ag surface confirm the experimental results.
New Findings on Multilayer Silicene on Si(111)? 3× ? 3R30o-Ag Template
Paola De Padova;Amanda Generosi;Barbara Paci;Carlo Ottaviani;Claudio Quaresima;Bruno Olivieri;
2019
Abstract
We report new findings on multilayer silicene grown on Si(111)?3 ×?3 R30o-Ag template, after the recent first compelling experimental evidence of its synthesis. Low-energy electrondiffraction, reflection high-energy electron diffraction, and energy-dispersive grazing incidence X-ray diffraction measurements were performed to show up the fingerprints of ?3 ×?3 multilayer silicene. Angle-resolved photoemission spectroscopy displayed new features in the second surface Brillouin zone, attributed to the multilayer silicene on Si(111)?3 ×?3 R30o-Ag. Band-structure dispersion theoretical calculations performed on a model of three honeycomb stacked layers, silicene grown on Si(111)?3 ×?3 R30o-Ag surface confirm the experimental results.File | Dimensione | Formato | |
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