L. Liu et al., EFFECT OF FINITE-TEMPERATURE CORRELATIONS ON PLASMON AND COULOMB DRAGIN COUPLED QUANTUM-WELLS, Physica. B, Condensed matter, 251, 1998, pp. 937-940
We calculate the temperature dependence of correlations in coupled qua
ntum wells using an STLS formalism generalized to finite temperatures.
We investigate the effects of the temperature dependence of the corre
lations on the acoustic and optical plasmon dispersion curves and on C
oulomb drag. Correlations are known to depress the energies of the two
plasmons. while finite temperatures tend to increase the energies. We
find this can result in considerable cancellation between the two eff
ects at finite temperatures. We find that at temperatures k(B)T < E-F,
the local fields do not change appreciably with temperature so that i
n calculating the temperature dependence of the Coulomb drag using the
zero temperature local fields suffices. The pair correlation function
within the layers is also found to be insensitive to temperatures for
k(B)T < E-F. For higher temperatures than this the pair correlation f
unction for small separations starts to increase as the exchange-corre
lation hole shrinks. (C) 1998 Elsevier Science B.V. All rights reserve
d.