Floquet engineering engineers time-hierarchical emergent local symmetries that restrict inter-sector couplings and create long-lived gauge sectors in U(1) lattice gauge theory simulations.
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Stroboscopic Rydberg dressing squeezes collective motional modes in atom arrays to reduce interatomic distance fluctuations below vacuum level and generates states with Wigner negativity.
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Protecting Quantum Simulations of Lattice Gauge Theories through Engineered Emergent Hierarchical Symmetries
Floquet engineering engineers time-hierarchical emergent local symmetries that restrict inter-sector couplings and create long-lived gauge sectors in U(1) lattice gauge theory simulations.
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Creating squeezed and non-classical collective motional many-body states through stroboscopic Rydberg dressing
Stroboscopic Rydberg dressing squeezes collective motional modes in atom arrays to reduce interatomic distance fluctuations below vacuum level and generates states with Wigner negativity.