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    Metastability in Coexisting Competing Orders

    Yasamin Masoumi1,*, Alberto de la Torre1,2, and Gregory A. Fiete1,2,3

    • *Contact author: masoumisefidkhani.y@northeastern.edu

    Phys. Rev. Lett. 135, 066501 – Published 4 August, 2025

    DOI: https://doi.org/10.1103/3dm4-p2yq

    Abstract

    The dynamical phase transition of a system with two coexisting competing order parameters is studied using the time-dependent-Ginzburg-Landau framework. The dynamics are induced by parameters capturing the physics of driving the system with an ultrafast laser pulse. A remarkable enhancement of the order parameter with a smaller mean-field value following the pump and the emergence of an induced metastable state is investigated through analytical and numerical studies. The effect of order parameter fluctuations on the exploration of the nonequilibrium free energy landscape reveals important information about the impact of both thermal and nonthermal fluctuations on the dynamics of the metastable state. Our results provide an interpretation of previously unexplained ultrafast experiments on superconductors with competing charge density wave order. Our formalism is relevant across broad classes of out-of-equilibrium systems beyond the condensed matter context, such as the Kibble-Zurek cosmological model.

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