Monte Carlo simulations show that normalized magnetocaloric response functions collapse onto a single universal curve for square, honeycomb, and triangular Ising lattices in monolayer and bilayer forms.
Magnetocaloric effect in bilayer material: Spin-S Ising model
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abstract
The isothermal magnetic entropy change has been obtained for the bilayer system that consists of $S_u$ and $S_l$ valued spins in each layer. The relation between the IMEC and the spin value as well as the value of exchange interaction between two layers have been obtained. Recently experimentally given double peaks behavior for manganite bilayers has been demonstrated theoretically, and explanation is given. On the other hand, the conditions that give rise to transition from this double peak behavior to the single peak behavior have been obtained and discussed.
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cond-mat.stat-mech 1years
2026 1verdicts
CONDITIONAL 1roles
background 1polarities
unclear 1representative citing papers
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Universal Scaling of the Magnetocaloric Effect in 2D Ising Monolayers and Bilayer
Monte Carlo simulations show that normalized magnetocaloric response functions collapse onto a single universal curve for square, honeycomb, and triangular Ising lattices in monolayer and bilayer forms.