Tuning a photonic-crystal bandgap in a driven Kerr microresonator switches the soliton spectrum between a uniform-power Mott-insulator comb and a non-uniform superfluid comb with phase coherence.
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The work identifies two distinct topological phases in bond-alternating spin-1 nanographene chains and proposes two specific molecular candidates whose phases can be distinguished by inelastic electron tunneling spectroscopy.
In Josephson junction chains, non-resonant two-into-two scattering dominates equilibrium plasmon decay rates while strong driving induces a crossover to a qualitatively different non-equilibrium steady state.