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Ising model with non-reciprocal interactions
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Ising model with non-reciprocal interactions
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Effective interactions that violate Newton's third law of action-reaction symmetry are common in systems where interactions are mediated by a non-equilibrium environment. Extensive Monte Carlo simulations are carried out on a two-dimensional Ising model, where the interactions are modified non-reciprocally. We demonstrate that the critical temperature decreases as the non-reciprocity increases and this decrease depends only on the magnitude of non-reciprocity. Further, travelling spin waves due to the local fluctuations in magnetisation are observed and these spin waves travel opposite to the non-reciprocity vector.
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Cited by 1 Pith paper
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Nonreciprocal Disorder Prevents Zero-Temperature Freezing in a Ferromagnet
Nonreciprocal disorder at density p > p_c in a 2D Ising model produces a continuous nonequilibrium transition that remains active at T=0, with p_c(T) ≤ 1/2 from gauge invariance.
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