In the present work, we consider magneto-conductivity behavior within a two-dimensional p-Si/SiGe/Si system. A theoretical model of magneto-conductivity with three important contributions is derived, namely, an account for the weak localization process, for electron-electron interaction effects, and for the Zeeman effect, which is taken into account only if a magnetic field is present. Further, theoretical values predicted by our model are compared with experimental magneto-conductivity values for a comparison of similarity and difference with experimental values. In our research, experimental data for p-Si/SiGe/Si were used, which has been previously collected by I. L. Drichko et al. 1 for supporting purposes.
Mabchour et al. (Wed,) studied this question.
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: