Far-from-equilibrium criticality in the random-field Ising model with Eshelby interactions - Multidisciplinary Institute in Artificial intelligence - Grenoble Alpes
Journal Articles Physical Review B Year : 2023

Far-from-equilibrium criticality in the random-field Ising model with Eshelby interactions

Abstract

We study a quasistatically driven random-field Ising model (RFIM) at zero temperature with interactions mediated by the long-range anisotropic Eshelby kernel. Analogously to amorphous solids at their yielding transition, and differently from ferromagnetic and dipolar RFIMs, the model shows a discontinuous magnetization jump associated with the appearance of a band-like structure for weak disorder and a continuous magnetization growth, yet punctuated by avalanches, for strong disorder. Through a finite-size scaling analysis in two and three dimensions we find that the two regimes are separated by a finite-disorder critical point, which we characterize. We discuss similarities and differences between the present model and models of sheared amorphous solids.
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hal-04491494 , version 1 (22-11-2024)

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Saverio Rossi, Giulio Biroli, Misaki Ozawa, Gilles Tarjus. Far-from-equilibrium criticality in the random-field Ising model with Eshelby interactions. Physical Review B, 2023, 108 (22), pp.L220202. ⟨10.1103/PhysRevB.108.L220202⟩. ⟨hal-04491494⟩
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