Lehrstuhl für Angewandte Physik, Universität Erlangen-Nürnberg, 91058 Erlangen, Germany.
Phys Rev Lett. 2012 Mar 9;108(10):106601. doi: 10.1103/PhysRevLett.108.106601. Epub 2012 Mar 7.
We investigate the magnetotransport in large area graphene Hall bars epitaxially grown on silicon carbide. In the intermediate field regime between weak localization and Landau quantization, the observed temperature-dependent parabolic magnetoresistivity is a manifestation of the electron-electron interaction. We can consistently describe the data with a model for diffusive (magneto)transport that also includes magnetic-field-dependent effects originating from ballistic time scales. We find an excellent agreement between the experimentally observed temperature dependence of magnetoresistivity and the theory of electron-electron interaction in the diffusive regime. We can further assign a temperature-driven crossover to the reduction of the multiplet modes contributing to electron-electron interaction from 7 to 3 due to intervalley scattering. In addition, we find a temperature-independent ballistic contribution to the magnetoresistivity in classically strong magnetic fields.
我们研究了外延生长在碳化硅上的大面积石墨烯霍尔条形中的磁输运。在弱局域化和朗道量子化之间的中间场区域,观察到的温度相关的抛物型磁阻是电子-电子相互作用的表现。我们可以用一个扩散(磁)输运模型来一致地描述数据,该模型还包括源自弹道时间尺度的磁场相关效应。我们发现实验观察到的磁阻温度依赖性与扩散区电子-电子相互作用的理论之间非常吻合。我们可以进一步将温度驱动的交叉归因于由于谷间散射导致参与电子-电子相互作用的多重模式从 7 减少到 3。此外,我们在经典强磁场中发现了磁阻的温度独立的弹道贡献。