Binary active chiral particle systems under out-of-phase circular drives form phase time crystals including bound-pair triangular lattices along with stripes, glasses, and phase-separated states.
Bruno, Impossibility of spontaneously rotating time crystals: A no-go theorem, Phys
3 Pith papers cite this work. Polarity classification is still indexing.
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Nonlinear interactions in discrete time crystals increase the system-size scaling exponent of quantum Fisher information approximately linearly with nonlinearity strength, enhancing sensing precision while preserving quadratic time scaling.
Floquet strong Hilbert space fragmentation stabilizes discrete time crystals in a disorder-free kicked XXZ spin chain, with lifetime independent of frequency and exponential in system size.
citing papers explorer
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Phase Time Crystals and Pairing in Binary Active Chiral Systems
Binary active chiral particle systems under out-of-phase circular drives form phase time crystals including bound-pair triangular lattices along with stripes, glasses, and phase-separated states.
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Nonlinearity-enhanced Quantum Sensing in Discrete Time Crystal Probes
Nonlinear interactions in discrete time crystals increase the system-size scaling exponent of quantum Fisher information approximately linearly with nonlinearity strength, enhancing sensing precision while preserving quadratic time scaling.
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Discrete time crystals enabled by Floquet strong Hilbert space fragmentation
Floquet strong Hilbert space fragmentation stabilizes discrete time crystals in a disorder-free kicked XXZ spin chain, with lifetime independent of frequency and exponential in system size.