arXiv · 1604.04034
Electron mobility of a two-dimensional electron gas at the interface of SrTiO$_3$ and LaAlO$_3$
Abstract
We calculate the mobility of a two-dimensional electron gas residing at the interface of LaAlO$_{3}$/SrTiO$_{3}$ following a three band Boltzmann approach at low temperature, where carrier-charged impurity scattering process is assumed to be dominant. We explain the anisotropic characteristic of the dielectric function, which is a consequence of elliptical bands close to Fermi surface. The screening effect, which weakens the long-range Coulomb interaction of the electron-impurity is considered within the random phase approximation. Working at carrier densities high enough to neglect the spin-orbit induced splitting of the bands, we find that the mobility varies inversely with the cubic power of the carrier density ($n_{2D}^{-3}$) in good agreement with the experimental results. We also investigate the role of variable dielectric constant of SrTiO$_{3}$, the multiband nature of the system and interband interactions in exploring this result.
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A. Faridi, R. Asgari, A. Langari. 2016-04-14. Electron mobility of a two-dimensional electron gas at the interface of SrTiO$_3$ and LaAlO$_3$. https://doi.org/10.1103/physrevb.93.235306
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