Scaling theory of charge transport and thermoelectric response in disordered 2D electron systems: From weak to strong localization
arXiv:2411.01127 · doi:10.7566/JPSJ.94.094705
Abstract
We develop a new theoretical scheme for charge transport and thermoelectric response in two-dimensional disordered systems exhibiting crossover from weak localization (WL) to strong localization (SL). The scheme is based on the scaling theory for Anderson localization combined with the Kubo-Luttinger theory. Key aspects of the scheme include introducing a unified function that seamlessly connects the WL and SL regimes, as well as describing the temperature () dependence of the conductance from high to low regions on the basis of the dephasing length. We found that the Seebeck coefficient, , behaves as in the WL limit and as () in the SL limit, both with possible logarithmic corrections. The scheme is applied to analyze experimental data for thin films of the p-type organic semiconductor poly[2,5-bis(3-alkylthiophen-2-yl)thieno(3,2-b)thiophene] (PBTTT).
6 pages, 2 figures