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Kinetics of heat flux avalanches at the first order transition in La(Fe-Mn-Si)₁₃-H_(1.65) compounds

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arxiv 1709.03445 v1 pith:GOFF6I34 submitted 2017-09-11 cond-mat.mtrl-sci

Kinetics of heat flux avalanches at the first order transition in La(Fe-Mn-Si)₁₃-H_(1.65) compounds

classification cond-mat.mtrl-sci
keywords avalanchesheattransitionfe-mn-sifirstfluxkineticsmodel
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We study heat flux avalanches occurring at the first order transition in La(Fe-Mn-Si)$_{13}$-H$_{1.65}$ magnetocaloric material. As the transition is associated to the phase boundaries motion that gives rise to the latent heat, we develop a non equilibrium thermodynamic model. By comparing the model with experimental calorimetry data available for Mn=0.18, we find the values of the intrinsic kinetic parameter $R_L$, expressing the damping for the moving boundary interface, at different magnetic fields. We conclude that by increasing field, thus approaching the critical point, the avalanches increase in number and their kinetics is slowed down.

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