We investigate the interplane magnetic coupling of the multilattice compoun
d Y2Ba4Cu7O15 by means of a bilayer Hubbard model with inequivalent planes.
We evaluate the spin response, effective interaction, and the intra- and i
nterplane spin-spin relaxation times within the fluctuation exchange approx
imation. We show that strong in-plane antiferromagnetic fluctuations are re
sponsible for a magnetic coupling between the planes, which in turns leads
to a tendency of the fluctuation in the two planes to equalize. This equali
zation effect grows with increasing in-plane antiferromagnetic fluctuations
, i.e., with decreasing temperature and decreasing doping, while it is comp
letely absent when the in-layer correlation length becomes of the order of
one lattice spacing. Our results provide a good qualitative description of
NMR and NQR experiments in Y2Ba4Cu7O15. [S0163-1829(99)51002-3].