arXiv · cond-mat/0302465
A classical model for the negative dc conductivity of ac-driven 2D electrons near the cyclotron resonance
Abstract
A classical model for {\em dc} transport of two dimensional electrons in a perpendicular magnetic field and under strong irradiation is considered. We demonstrate that, near the cyclotron resonance condition, and for {\em linear} polarization of the {\em ac} field, a strong change of the diagonal component, $σ_d$, of the {\em dc} conductivity occurs in the presence of a {\em weak} nonparabolicity of the electron spectrum. Small change in the electron effective mass due to irradiation can lead to negative $σ_d$, while the Hall component of the {\em dc} conductivity remains practically unchanged. Within the model considered, the sign of $σ_d$ depends on the relative orientation of the {\em dc} and {\em ac} fields, the sign of the detuning of the {\em ac} frequency from the cyclotron resonance, and the sign of nonparabolic term in the energy spectrum.
Explore related subjects
Keep this discovery
A. A. Koulakov, M. E. Raikh. 2003-02-24. A classical model for the negative dc conductivity of ac-driven 2D electrons near the cyclotron resonance. https://doi.org/10.1103/physrevb.68.115324
Cite the original work for its findings. Save a collection to share your selection of sources.