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ndltd-NEU--neu-3314142016-04-25T16:14:29ZFirst-order transition in the breakdown of disordered mediaWe study the approach to global breakdown in disordered media driven by increasing external forces. We first analyze the problem by mean-field theory, showing that the failure process can be described as a first-order phase transition, similarly to the case of thermally activated fracture in homogeneous media. Then we quantitatively confirm the predictions of the mean-field theory using numerical simulations of discrete models. Widely distributed avalanches and the corresponding mean-field scaling are explained by the long-range nature of elastic interactions. We discuss the analogy of our results to driven disordered first-order transitions and spinodal nucleation in magnetic systems.http://hdl.handle.net/2047/d20002178
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We study the approach to global breakdown in disordered media driven by increasing external forces. We first analyze the problem by mean-field theory, showing that the failure process can be described as a first-order phase transition, similarly to the case of thermally activated fracture in homogeneous media. Then we quantitatively confirm the predictions of the mean-field theory using numerical simulations of discrete models. Widely distributed avalanches and the corresponding mean-field scaling are explained by the long-range nature of elastic interactions. We discuss the analogy of our results to driven disordered first-order transitions and spinodal nucleation in magnetic systems.
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First-order transition in the breakdown of disordered media
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spellingShingle |
First-order transition in the breakdown of disordered media
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title_short |
First-order transition in the breakdown of disordered media
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title_full |
First-order transition in the breakdown of disordered media
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First-order transition in the breakdown of disordered media
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First-order transition in the breakdown of disordered media
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first-order transition in the breakdown of disordered media
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http://hdl.handle.net/2047/d20002178
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1718235752870969344
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