Extends classical nucleation theory to nonequilibrium non-conserved scalar fields by showing the time-reversed-relaxation ansatz fails and deriving corrected quasipotentials via two independent routes, validated numerically.
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2 Pith papers cite this work, alongside 21 external citations. Polarity classification is still indexing.
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cond-mat.stat-mech 2years
2026 2representative citing papers
Constructs nonequilibrium nucleation theory for nonconserved order parameters and reports explicit predictions that agree with numerical simulations in active matter and population dynamics models.
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Nucleation and time-reversal symmetry breaking in nonconserved scalar field theories
Extends classical nucleation theory to nonequilibrium non-conserved scalar fields by showing the time-reversed-relaxation ansatz fails and deriving corrected quasipotentials via two independent routes, validated numerically.
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Nonequilibrium nucleation theory for nonconserved fields: from active matter to population dynamics
Constructs nonequilibrium nucleation theory for nonconserved order parameters and reports explicit predictions that agree with numerical simulations in active matter and population dynamics models.