Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
1862505 | Physics Letters A | 2008 | 7 Pages |
Abstract
We study the dynamics of an electron wave-packet in a two-dimensional square lattice with an aperiodic site potential in the presence of an external uniform electric field. The aperiodicity is described by ϵm=Vcos(Ïαmxνx)cos(Ïαmyνy) at lattice sites (mx,my), with Ïα being a rational number, and νx and νy tunable parameters, controlling the aperiodicity. Using an exact diagonalization procedure and a finite-size scaling analysis, we show that in the weakly aperiodic regime (νx,νy<1), a phase of extended states emerges in the center of the band at zero field giving support to a macroscopic conductivity in the thermodynamic limit. Turning on the field gives rise to Bloch oscillations of the electron wave-packet. The spectral density of these oscillations may display a double peak structure signaling the spatial anisotropy of the potential landscape. The frequency of the oscillations can be understood using a semi-classical approach.
Related Topics
Physical Sciences and Engineering
Physics and Astronomy
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Authors
F.A.B.F. de Moura, L.P. Viana, M.L. Lyra, V.A. Malyshev, F. DomÃnguez-Adame,