The experimental data regarding the energy distribution of dangling-bond electronic states at the Si(111)-2x1 surface, with special attention to the gap between filled and empty states, are revisited. Clearly some of the results are not compatible. Theorists almost unanimously conclude in favor of a strong (about 0.25 eV) excitonic energy in the optical transitions between surface states. On the experimental side, on the other hand, conflicting results seem to support either large or negligible exciton energy. In order to reconcile all available data, it has been suggested that in highly doped samples a sizeable gap shrinking should occur. We have performed a reflectance anisotropy spectroscopy experiment in order to verify this hypothesis....
A long-standing puzzle regarding the Si(111)-2×1 surface has been solved. The surface energy gap pre...
A long-standing puzzle regarding the Si(111)-2x1 surface has been solved. The surface energy gap pr...
We compare the results of ab initio calculations with measured reflection anisotropy spectra and sho...
The experimental data regarding the energy distribution of dangling-bond electronic states at the Si...
The experimental data regarding the energy distribution of dangling-bond electronic states at the Si...
Optical transitions between surface states associated with dangling bonds in Si(111)2X1 have been me...
Optical transitions between surface states associated with dangling bonds in Si(111)2x1 have been me...
A long-standing puzzle regarding the Si(111) - 2 x 1 surface has been solved. The surface energy gap...
A long-standing puzzle regarding the Si(111) - 2 x 1 surface has been solved. The surface energy gap...
The Si(111)2x1 is among the most investigated surfaces. Nonetheless, several issues are still not un...
The Si(111)2x1 is one of the most studied surfaces. Its reconstruction is described by the Pandey mo...
A long-standing puzzle regarding the Si(111)-2×1 surface has been solved. The surface energy gap pre...
A long-standing puzzle regarding the Si(111)-2x1 surface has been solved. The surface energy gap pr...
We compare the results of ab initio calculations with measured reflection anisotropy spectra and sho...
The experimental data regarding the energy distribution of dangling-bond electronic states at the Si...
The experimental data regarding the energy distribution of dangling-bond electronic states at the Si...
Optical transitions between surface states associated with dangling bonds in Si(111)2X1 have been me...
Optical transitions between surface states associated with dangling bonds in Si(111)2x1 have been me...
A long-standing puzzle regarding the Si(111) - 2 x 1 surface has been solved. The surface energy gap...
A long-standing puzzle regarding the Si(111) - 2 x 1 surface has been solved. The surface energy gap...
The Si(111)2x1 is among the most investigated surfaces. Nonetheless, several issues are still not un...
The Si(111)2x1 is one of the most studied surfaces. Its reconstruction is described by the Pandey mo...
A long-standing puzzle regarding the Si(111)-2×1 surface has been solved. The surface energy gap pre...
A long-standing puzzle regarding the Si(111)-2x1 surface has been solved. The surface energy gap pr...
We compare the results of ab initio calculations with measured reflection anisotropy spectra and sho...