arXiv · 1905.09291
Magnetodrag in hydrodynamic regime: effects of magnetoplasmon resonance and Hall viscosity
Abstract
In this work we study magnetotransport properties in electronic double layers of strongly correlated electron liquids. For sufficiently clean high-mobility samples, the high-temperature regime of transport in these systems can be described in pure hydrodynamic terms. We concentrate on the magnetic field dependence of longitudinal drag effect mediated by the interlayer Coulomb scattering and identify several mechanisms of transresistance which is caused by viscous flows, magnetoplasmon resonance, and dissipative thermal fluxes. In particular, we elucidate how Hall viscosity enters magnetodrag and modifies its temperature dependence in the magnetic field.
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S. S. Apostolov, D. A. Pesin, A. Levchenko. 2019-05-22. Magnetodrag in hydrodynamic regime: effects of magnetoplasmon resonance and Hall viscosity. https://doi.org/10.1103/physrevb.100.115401
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