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- W3101963668 abstract "We consider large deviations of the dynamical activity -- defined as the total number of configuration changes within a time interval -- for mean-field and one-dimensional Ising models, in the presence of a magnetic field. We identify several dynamical phase transitions that appear as singularities in the scaled cumulant generating function of the activity. In particular, we find low-activity ferromagnetic states and a novel high-activity phase, with associated first- and second-order phase transitions. The high-activity phase has a negative susceptibility to the magnetic field. In the mean-field case, we analyse the dynamical phase coexistence that occurs on first-order transition lines, including the optimal-control forces that reproduce the relevant large deviations. In the one-dimensional model, we use exact diagonalisation and cloning methods to perform finite-size scaling of the first-order phase transition at non-zero magnetic field." @default.
- W3101963668 created "2020-11-23" @default.
- W3101963668 creator A5029749518 @default.
- W3101963668 creator A5076094889 @default.
- W3101963668 date "2020-06-24" @default.
- W3101963668 modified "2023-09-24" @default.
- W3101963668 title "Dynamical phase transitions for the activity biased Ising model in a magnetic field" @default.
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- W3101963668 doi "https://doi.org/10.1088/1742-5468/ab8c34" @default.
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