Electron-electron interaction correction and magnetoresistance in tilted fields in Si-based 2D systems
Abstract
We study diffusive electron-electron interaction correction to conductivity by analyzing simultaneously and for disordered 2D electron systems in Si in tilted magnetic field. Tilting the field is shown to be a straightforward tool to disentangle spin and orbital effects. In particular, by changing the tilt angle we prove experimentally that in the field range the correction depends on modulus of magnetic field rather than on its direction, which is expected for a system with isotropic -factor. In the high-field limit the correction behaves as , as expected theoretically (Lee, Ramakrishnan, Phys. Rev. B{\bf 26}, 4009 (1982)). Our data prove that the diffusive electron-electron interaction correction to conductivity is not solely responsible for the huge and temperature dependent magnetoresistance in parallel field, typically observed in Si-MOSFETs.
Cite
@article{arxiv.1305.3736,
title = {Electron-electron interaction correction and magnetoresistance in tilted fields in Si-based 2D systems},
author = {A. Yu. Kuntsevich and L. A. Morgun and V. M. Pudalov},
journal= {arXiv preprint arXiv:1305.3736},
year = {2013}
}
Comments
12 pages, 7 figures