1987
DOI: 10.1007/bf01312757
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Study of the single-particle energy spectrum of disordered systems: III. The two-band case

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Cited by 2 publications
(3 citation statements)
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“…Other global parameters reflecting in peculiarities of the density of states do not exist, in particular there are no van-Hove singularities in disordered systems which could influence the asymptotic behaviour of the recursion coefficients. Consequently, the tridiagonalization of the effective medium Hamiltonian must rapidly converge to a characteristic chain the parameters of which yield the mobility edges [23, 241. In the one-band case this is the constant chain [23, 241 and in two-or more-band cases the periodic chain [25]. The chain tails obtained in such a way serve to terminate the finite chains numerically generated in the recursion method.…”
Section: (44)mentioning
confidence: 99%
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“…Other global parameters reflecting in peculiarities of the density of states do not exist, in particular there are no van-Hove singularities in disordered systems which could influence the asymptotic behaviour of the recursion coefficients. Consequently, the tridiagonalization of the effective medium Hamiltonian must rapidly converge to a characteristic chain the parameters of which yield the mobility edges [23, 241. In the one-band case this is the constant chain [23, 241 and in two-or more-band cases the periodic chain [25]. The chain tails obtained in such a way serve to terminate the finite chains numerically generated in the recursion method.…”
Section: (44)mentioning
confidence: 99%
“…Note that the pseudogap behaviour at the mobility edges is closely related with the divergence of the localization length at the mobility edges [25]. If a disordered system possesses mobility edges, then the proposed kind of termination of the chains of recursion coefficients can be assumed to be valid and Fig.…”
Section: Two-band System Of Amorphous Silicon or Germaniummentioning
confidence: 99%
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