Stochastic resetting generates finite pairwise entanglement in periodically driven spin chains, with critical resetting rate r_c and optimal rate r_m showing non-monotonic dependence on drive frequency ω_D.
Eckardt, Colloquium: Atomic quantum gases in periodically driven optical lattices, Rev
4 Pith papers cite this work. Polarity classification is still indexing.
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UNVERDICTED 4representative citing papers
Floquet modulation of magnon frequency in a cavity-magnon system produces a discontinuous parity-symmetry-breaking transition followed by a continuous restoration as drive strength increases.
Demonstration of astigmatism-free 3D optical tweezer control using 3D-AODL and fading-Shepard waveforms, achieving velocities over 4.2 m/s across a 200 μm × 200 μm × 136 μm volume for rapid atom rearrangement.
Floquet engineering with periodic light fields induces odd-parity magnetism and tunable spin splitting in 2D collinear antiferromagnets.
citing papers explorer
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Generating pairwise entanglement in periodically driven quantum spin chains with stochastic resetting
Stochastic resetting generates finite pairwise entanglement in periodically driven spin chains, with critical resetting rate r_c and optimal rate r_m showing non-monotonic dependence on drive frequency ω_D.
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Superradiant phase transition in cavity magnonics via Floquet engineering
Floquet modulation of magnon frequency in a cavity-magnon system produces a discontinuous parity-symmetry-breaking transition followed by a continuous restoration as drive strength increases.
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Astigmatism-free 3D Optical Tweezer Control for Rapid Atom Rearrangement
Demonstration of astigmatism-free 3D optical tweezer control using 3D-AODL and fading-Shepard waveforms, achieving velocities over 4.2 m/s across a 200 μm × 200 μm × 136 μm volume for rapid atom rearrangement.
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Light-induced Odd-parity Magnetism in Conventional Collinear Antiferromagnets
Floquet engineering with periodic light fields induces odd-parity magnetism and tunable spin splitting in 2D collinear antiferromagnets.