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The inelastic relaxation time due to electron-electron collisions in high-mobility two-dimensional systems under microwave radiations

Mesoscale and Nanoscale Physics 2007-05-23 v1

Abstract

In some theoretical analyses of microwave-induced magnetoresistance oscillations in high-mobility two-dimensional systems, the "inelastic relaxation time" τin\tau_{in} due to electron-electron scattering is evaluated using an equilibrium distribution function f0f^0 in the absence of radiation, and it is concluded that τin\tau_{in} is much larger than τq\tau_{q}, the single-particle relaxation time due to impurity scattering. However, under the irradiation of a microwave capable of producing magnetoresistance oscillation, the distribution function of the high-mobility electron gas deviates remarkably from f0f^0 at low temperatures. Estimating τin\tau_{in} using an approximate nonequilibrium distribution function rather than using f0f^0, one will find the system to be in the opposite limit 1/τin1/τq1/\tau_{in}\ll 1/\tau_{q} even for T=0 K. Therefore, models which depend on the assumption 1/τin1/τq1/\tau_{in}\gg 1/\tau_{q} may not be justifiable.

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Cite

@article{arxiv.cond-mat/0506312,
  title  = {The inelastic relaxation time due to electron-electron collisions in high-mobility two-dimensional systems under microwave radiations},
  author = {X. L. Lei and S. Y. Liu},
  journal= {arXiv preprint arXiv:cond-mat/0506312},
  year   = {2007}
}

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