The wavevector-dependent spin autocorrelation function of a classical Heisenberg model on a square lattice is calculated from the coupled-mode theory of spin dynamics. This theory is consistent with the spherical model for static spin correlations; as the temperature, T, approaches zero the inverse correlation length kappa approximately exp(-const/T). For a ferromagnetic exchange coupling, the decay rate of long wavelength fluctuations, GAMMA(q), is proportionnal to q2T1/2 in the limit (q/kappa) --> infinity, whereas in the opposite, hydrodynamic limit GAMMA(q) is-proportional-to q2{T ln(kappa/q)}1/2. At the wavevector for incipient antiferromagnetic ordering, the decay rate is proportional to kappaT1/2, while the corresponding decay rate near the Brillouin zone centre is proportional to (q2T1/2/kappa). The coupled-mode equations for ferromagnetically and antiferromagnetically coupled models are solved numerically on a fine grid of wavevectors. The spin autocorrelation function, and its power spectrum, are surveyed over a wide range of temperatures and wavevectors.
A THEORY OF SPIN DYNAMICS IN THE CLASSICAL 2-DIMENSIONAL HEISENBERG MAGNET / SW LOVESEY; E. ENGDAHL; A. CUCCOLI; V. TOGNETTI. - In: JOURNAL OF PHYSICS. CONDENSED MATTER. - ISSN 0953-8984. - STAMPA. - 6:(1994), pp. 7099-7107. [10.1088/0953-8984/6/35/018]
A THEORY OF SPIN DYNAMICS IN THE CLASSICAL 2-DIMENSIONAL HEISENBERG MAGNET
CUCCOLI, ALESSANDRO;TOGNETTI, VALERIO
1994
Abstract
The wavevector-dependent spin autocorrelation function of a classical Heisenberg model on a square lattice is calculated from the coupled-mode theory of spin dynamics. This theory is consistent with the spherical model for static spin correlations; as the temperature, T, approaches zero the inverse correlation length kappa approximately exp(-const/T). For a ferromagnetic exchange coupling, the decay rate of long wavelength fluctuations, GAMMA(q), is proportionnal to q2T1/2 in the limit (q/kappa) --> infinity, whereas in the opposite, hydrodynamic limit GAMMA(q) is-proportional-to q2{T ln(kappa/q)}1/2. At the wavevector for incipient antiferromagnetic ordering, the decay rate is proportional to kappaT1/2, while the corresponding decay rate near the Brillouin zone centre is proportional to (q2T1/2/kappa). The coupled-mode equations for ferromagnetically and antiferromagnetically coupled models are solved numerically on a fine grid of wavevectors. The spin autocorrelation function, and its power spectrum, are surveyed over a wide range of temperatures and wavevectors.I documenti in FLORE sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.