http://arxiv.org/abs/cond-mat/0511067We investigate the effect of exchange and correlation (xc) on the plasmon spectrum and the Coulomb drag between spatially separated low-density two-dimensional electron layers. We adopt a new approach, which employs dynamic xc kernels in the calculation of the bi-layer plasmon spectra and of the plasmon-mediated drag, and static many-body local field factors in the calculation of the particle-hole contribution to the drag. The spectrum of bi-layer plasmons and the drag resistivity are calculated in a broad range of temperatures taking into account both intra- and inter-layer correlation effects. We observe that both plasmon modes are strongly affected by xc corrections. After the inclusion of the comple...
We calculate the temperature dependence of correlations in coupled quantum wells using an STLS forma...
We calculate the temperature dependence of correlations in coupled quantum wells using an STLS forma...
At temperatures comparable to the Fermi temperature, we have measured a plasmon enhanced Coulomb dra...
We have studied the effect of dynamic electron correlations on Coulomb drag in a low density symmetr...
At temperatures comparable to the Fermi temperature, we have measured a plasmon enhanced Coulomb dra...
Coulomb drag experiments in which the interlayer resistivity is measured are important as they provi...
We investigate the effect of many-body electronic correlations on spin Coulomb drag (SCD) beyond the...
We investigate the effect of many-body electronic correlations on spin Coulomb drag (SCD) beyond the...
We use dynamical local-field corrections to study the plasmon dispersion and damping in double-layer...
We study the Coulomb drag rate for electrons in a double-quantum-well structure taking into account ...
The charge-density oscillations (plasmons) of a low-density two-dimensional uniform electron gas are...
Cataloged from PDF version of article.We use dynamical local-field corrections to study the plasmon ...
Motivated by recent Coulomb drag experiments in pairs of low-density two-dimensional (2D) electron g...
Measurements and calculations of Coulomb drag between two low density, closely spaced, two-dimension...
Measurements and calculations of Coulomb drag between two low density, closely spaced, two-dimension...
We calculate the temperature dependence of correlations in coupled quantum wells using an STLS forma...
We calculate the temperature dependence of correlations in coupled quantum wells using an STLS forma...
At temperatures comparable to the Fermi temperature, we have measured a plasmon enhanced Coulomb dra...
We have studied the effect of dynamic electron correlations on Coulomb drag in a low density symmetr...
At temperatures comparable to the Fermi temperature, we have measured a plasmon enhanced Coulomb dra...
Coulomb drag experiments in which the interlayer resistivity is measured are important as they provi...
We investigate the effect of many-body electronic correlations on spin Coulomb drag (SCD) beyond the...
We investigate the effect of many-body electronic correlations on spin Coulomb drag (SCD) beyond the...
We use dynamical local-field corrections to study the plasmon dispersion and damping in double-layer...
We study the Coulomb drag rate for electrons in a double-quantum-well structure taking into account ...
The charge-density oscillations (plasmons) of a low-density two-dimensional uniform electron gas are...
Cataloged from PDF version of article.We use dynamical local-field corrections to study the plasmon ...
Motivated by recent Coulomb drag experiments in pairs of low-density two-dimensional (2D) electron g...
Measurements and calculations of Coulomb drag between two low density, closely spaced, two-dimension...
Measurements and calculations of Coulomb drag between two low density, closely spaced, two-dimension...
We calculate the temperature dependence of correlations in coupled quantum wells using an STLS forma...
We calculate the temperature dependence of correlations in coupled quantum wells using an STLS forma...
At temperatures comparable to the Fermi temperature, we have measured a plasmon enhanced Coulomb dra...