Non-Markovian dynamics stabilizes boundary time crystals over wide parameter ranges in dissipative systems and induces higher-order limit cycles.
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Decoherence induces the quantum Zeno effect that inhibits transitions and restricts performance in adiabatic quantum algorithms and annealing based on Landau-Zener crossings.
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Stabilizing boundary time crystals through Non-markovian dynamics
Non-Markovian dynamics stabilizes boundary time crystals over wide parameter ranges in dissipative systems and induces higher-order limit cycles.
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Quantum Zeno effect versus adiabatic quantum computing and quantum annealing
Decoherence induces the quantum Zeno effect that inhibits transitions and restricts performance in adiabatic quantum algorithms and annealing based on Landau-Zener crossings.