arXiv · cond-mat/0003118
Coulomb drag between one-dimensional conductors
Abstract
We have analyzed Coulomb drag between currents of interacting electrons in two parallel one-dimensional conductors of finite length $L$ attached to external reservoirs. For strong coupling, the relative fluctuations of electron density in the conductors acquire energy gap $M$. At energies larger than $Γ= const \times v_- \exp (-LM/v_-)/L + Γ_{+}$, where $Γ_{+}$ is the impurity scattering rate, and for $L>v_-/M$, where $v_-$ is the fluctuation velocity, the gap leads to an ``ideal'' drag with almost equal currents in the conductors. At low energies the drag is suppressed by coherent instanton tunneling, and the zero-temperature transconductance vanishes, indicating the Fermi liquid behavior.
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Vadim Ponomarenko, Dmitri Averin. 2000-08-07. Coulomb drag between one-dimensional conductors. https://doi.org/10.1103/physrevlett.85.4928
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