Quasi-Nambu-Goldstone modes exist universally in many-body scar models in the degenerate limit, with properties determined by the quasisymmetry of the scar tower.
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Quantum many-body scars in a kicked long-range Ising model produce time-translation symmetry breaking via π-paired Floquet doublets, yielding period-doubling oscillations that scale to last exponentially long in system size for selected initial states.
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Quasi-Nambu-Goldstone modes in many-body scar models
Quasi-Nambu-Goldstone modes exist universally in many-body scar models in the degenerate limit, with properties determined by the quasisymmetry of the scar tower.