Theoretical study of isolated dangling bonds, dangling bond wires and dangling bond clusters on H:Si(100)-(2$\times$1) surface

dc.creatorRaza, Hassan
dc.date2006-11-15
dc.date.accessioned2026-07-07T08:56:54Z
dc.date.available2026-07-07T08:56:54Z
dc.descriptionWe theoretically study the electronic band structure of isolated unpaired and paired dangling bonds (DB), DB wires and DB clusters on H:Si(100)-(2$\times$1) surface using Extended Hückel Theory (EHT) and report their effect on the Si band gap. An isolated unpaired DB introduces a near-midgap state, whereas a paired DB leads to $π$ and $π^*$ states, similar to those introduced by an unpassivated asymmetric dimer (AD) Si(100)-(2$\times$1) surface. Such induced states have very small dispersion due to their isolation from the other states, which reside in conduction and valence band. On the other hand, the surface state induced due to an unpaired DB wire in the direction along the dimer row (referred to as $[\bar{1}10]$), has large dispersion due to the strong coupling between the adjacent DBs, being 3.84$Å$ apart. However, in the direction perpendicular to the dimer row (referred to as [110]), due to the reduced coupling between the DBs being 7.68$Å$ apart, the dispersion in the surface state is similar to that of an isolated unpaired DB. Apart from this, a paired DB wire in $[\bar{1}10]$ direction introduces $π$ and $π^*$ states similar to those of an AD surface and a paired DB wire in [110] direction exhibits surface states similar to those of an isolated paired DB, as expected. Besides this, we report the electronic structure of different DB clusters, which exhibit states inside the band gap that can be interpreted as superpositions of states due to unpaired and paired DBs.
dc.description7 pages, 10 figure, 1 table
dc.identifierhttps://arxiv.org/abs/cond-mat/0611417
dc.identifierhttp://arxiv.org/abs/cond-mat/0611417
dc.identifierPhys. Rev. B 76, 045308 (2007)
dc.identifierdoi:10.1103/PhysRevB.76.045308
dc.identifier.urihttp://salesiana.dossiersoluciones.com/handle/123456789/146777
dc.subjectMesoscale and Nanoscale Physics
dc.titleTheoretical study of isolated dangling bonds, dangling bond wires and dangling bond clusters on H:Si(100)-(2$\times$1) surface
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