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Experimental Realization of the 1D Random Field Ising Model

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arxiv 2110.03596 v2 pith:MILSPRMR submitted 2021-10-07 cond-mat.mes-hall

classification cond-mat.mes-hall
keywords fieldavalanchesconfigurationisingmodelrandomagreementapplication
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We have measured magnetic-field-induced avalanches in a square artificial spin ice array of interacting nanomagnets. Starting from the ground state ordered configuration, we imaged the individual nanomagnet moments after each successive application of an incrementally increasing field. The statistics of the evolution of the moment configuration show good agreement with the canonical one-dimensional random field Ising model. We extract information about the microscopic structure of the arrays from our macroscopic measurements of their collective behavior, demonstrating a process that could be applied to other systems exhibiting avalanches.

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    SineKAN, a Kolmogorov-Arnold network with sinusoidal activations, accurately represents ground states of 1D spin chains and outperforms RBM, LSTM, and MLP neural quantum states in the J1-J2 model.

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