V. Drchal et al., Temperature dependence of the interlayer exchange coupling in magnetic multilayers: An ab initio approach, PHYS REV B, 60(13), 1999, pp. 9588-9595
The temperature dependence of interlayer exchange coupling (IEC) is studied
theoretically within the asymptotic theory with preasymptotic corrections
included, and by employing an ab initio approach based on the Green functio
n formulation of the IEC. In this paper an efficient method for calculating
integrals involving the Fermi-Dirac distribution by representing the occur
ring integrands by a sum of complex exponentials is discussed. In particula
r a method which allows us to extract separately the temperature-dependence
of the short-period (SPO) and long-period (LPO) oscillations in the case o
f Co/Cu/Co(001) trilayers from computed values is suggested. Furthermore, a
detailed discussion of predictions of asymptotic theory is given. It is fo
und that in the limit of a large spacer thickness N ab initio calculations
confirm the results of asymptotic theories for SPO for a variety of trilaye
r geometries, namely, that the oscillation amplitudes depend on the tempera
ture T as cNT/sinh(cNT). On the other hand, for the case of the LPO this si
mple form does not apply. We explain this behavior by large preasymptotic c
orrections necessary for the LPO. The combined effect of the temperature an
d the disorder in the spacer is also discussed.