Density-dependent thermopower oscillations in mesoscopic two-dimensional electron gases
arXiv:1408.0730 · doi:10.1088/1367-2630/16/8/085009
Abstract
We present thermopower and resistance measurements on GaAs-based mesoscopic two-dimensional electron gases (2DEGs) as functions of the electron density . At high we observe good agreement between the measured and , the Mott prediction for a non-interacting metal. As is lowered, we observe a crossover from Mott-like behaviour to that where shows strong oscillations and even sign changes. Remarkably, there are absolutely no features in corresponding to those in . In fact, is devoid of even any universal conductance fluctuations. A statistical analysis of the thermopower oscillations from two devices of dissimilar dimensions suggest a universal nature of the oscillations. We critically examine whether they can be mesoscopic fluctuations of the kind described by Lesovik and Khmelnitskii in Sov. Phys. JETP. \textbf{67}, 957 (1988).
New Journal of Physics (accepted)