The electronic properties of ultra-thin Si layers have been investigated. Using the linear muffin tin orbital (LMTO) method, we have studied band gap and interface states for supercells formed by Si(111) layers of variable thickness (1-7 double layers) embedded in a CaF2 host crystal, a system with interesting analogies to porous silicon. Our results show that the band gap opening is dominated by the valence band which follows the effective mass confinement picture, while the conduction band is found to flatten out and shift very modestly. The latter behaviour is due to hybridization effects between Si and Ca states which lead to bonding-antibonding interface states in the gap. For 1 and 2 double layers the bonding Si-Ca states emerge from ...
By means of ab initio calculations with hybrid functionals we show a possibility for quasi-2D silico...
We have synthesized, by Molecular Beam Epitaxy (MBE), Si/CaF2 multilayers which are optically active...
We have synthesized, by Molecular Beam Epitaxy (MBE), Si/CaF2 multilayers which are optically active...
The electronic properties of ultra-thin Si layers have been investigated. Using the linear muffin ti...
The electronic properties of ultra-thin Si layers have been investigated. Using the linear muffin ti...
We present first principle calculations of thin (1-7 double layers) silicon (111) layers in CaF2, a ...
We present first principle calculations of ultrathin silicon (111) layers embedded in CaF2, a lattic...
We present first principle calculations of ultrathin silicon (111) layers embedded in CaF2, a lattic...
One promising approach for the development of silicon-based light-emitting devices is the epitaxial ...
Abstract One promising approach for the development of silicon-based-light-emitting devices is the e...
The surface linear muffin-tin method in the atomic-sphere approximation (SLMTO-ASA) is applied to st...
The observation of intense luminescence in Si/SiO2 superlattices (SLs) has lead to new theoretical r...
URL:http://link.aps.org/doi/10.1103/PhysRevB.44.8880 DOI:10.1103/PhysRevB.44.8880The electronic str...
We present a first-principle theoretical study of the dielectric functions of Si/CaF2 superlattices....
The first stage of formation of the CaF2-Si(111) and Ca-Si(111) interfaces is studied through the em...
By means of ab initio calculations with hybrid functionals we show a possibility for quasi-2D silico...
We have synthesized, by Molecular Beam Epitaxy (MBE), Si/CaF2 multilayers which are optically active...
We have synthesized, by Molecular Beam Epitaxy (MBE), Si/CaF2 multilayers which are optically active...
The electronic properties of ultra-thin Si layers have been investigated. Using the linear muffin ti...
The electronic properties of ultra-thin Si layers have been investigated. Using the linear muffin ti...
We present first principle calculations of thin (1-7 double layers) silicon (111) layers in CaF2, a ...
We present first principle calculations of ultrathin silicon (111) layers embedded in CaF2, a lattic...
We present first principle calculations of ultrathin silicon (111) layers embedded in CaF2, a lattic...
One promising approach for the development of silicon-based light-emitting devices is the epitaxial ...
Abstract One promising approach for the development of silicon-based-light-emitting devices is the e...
The surface linear muffin-tin method in the atomic-sphere approximation (SLMTO-ASA) is applied to st...
The observation of intense luminescence in Si/SiO2 superlattices (SLs) has lead to new theoretical r...
URL:http://link.aps.org/doi/10.1103/PhysRevB.44.8880 DOI:10.1103/PhysRevB.44.8880The electronic str...
We present a first-principle theoretical study of the dielectric functions of Si/CaF2 superlattices....
The first stage of formation of the CaF2-Si(111) and Ca-Si(111) interfaces is studied through the em...
By means of ab initio calculations with hybrid functionals we show a possibility for quasi-2D silico...
We have synthesized, by Molecular Beam Epitaxy (MBE), Si/CaF2 multilayers which are optically active...
We have synthesized, by Molecular Beam Epitaxy (MBE), Si/CaF2 multilayers which are optically active...