The transition temperature between the ordered and the paramagnetic phase of 3D quantum Heisenberg ferro- and antiferromagnets is theoretically predicted with very good accuracy for any spin value, starting from its known counterpart for the classical system. The really straightforward evaluation is made possible by a method that reduces the quantum problem to an effective classical Hamiltonian.

TRANSITION TEMPERATURE OF THREE-DIMENSIONAL QUANTUM HEISENBERG FERRO- AND ANTIFERROMAGNETS / A. CUCCOLI; R. VAIA; R. MACIOCCO. - In: JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS. - ISSN 0304-8853. - STAMPA. - 226-230, PART 1:(2001), pp. 566-568. [10.1016/S0304-8853(00)00682-X]

TRANSITION TEMPERATURE OF THREE-DIMENSIONAL QUANTUM HEISENBERG FERRO- AND ANTIFERROMAGNETS

CUCCOLI, ALESSANDRO;
2001

Abstract

The transition temperature between the ordered and the paramagnetic phase of 3D quantum Heisenberg ferro- and antiferromagnets is theoretically predicted with very good accuracy for any spin value, starting from its known counterpart for the classical system. The really straightforward evaluation is made possible by a method that reduces the quantum problem to an effective classical Hamiltonian.
2001
226-230, PART 1
566
568
A. CUCCOLI; R. VAIA; R. MACIOCCO
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Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/12554
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