RUS  ENG
Full version
JOURNALS // Preprints of the Keldysh Institute of Applied Mathematics // Archive

Keldysh Institute preprints, 2024 081, 23 pp. (Mi ipmp3291)

This article is cited in 3 papers

Calculation of the entropy of a classical Heisenberg ferromagnet based on the approximation of two-particle distribution functions

A. V. Ivanov


Abstract: The paper presents a new method for directly calculating the entropy of a classical Heisenberg magnet based on the approximation of a two-particle distribution function. Such an approximation, taking into account the correlations between magnetic moments, is also the basis for creating a system of equations of correlation magnetodynamics.
The method presented in the paper is approximate, does not have a strict justification and can be considered as a certain expansion, each subsequent member of which, based on the highest distribution functions, allows to increase the accuracy.
The efficiency of the method is demonstrated in a large series of computational experiments for three types of crystal lattice (primitive, body-centered and face-centered) in a wide range of parameters.

Keywords: atomistic spin dynamics, corellation magnitodynamics.

DOI: 10.20948/prepr-2024-81



© Steklov Math. Inst. of RAS, 2026