Generalized Krylov complexity predicts the minimum time to realize target operations in analog quantum simulators such as Rydberg atom arrays.
Semeghiniet al., Probing topological spin liquids on a programmable quantum simulator, Science374, abi8794 (2021), arXiv:2104.04119 [quant-ph]
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A wavefront-shaping technique enables quantum interference from up to five indistinguishable quantum dots on the same chip.
A blockade-restricted long-range model for Rydberg-cavity systems yields a distinct blockaded ferromagnetic/superradiant phase at equilibrium and long-range many-body scars with logarithmic entanglement dynamics out of equilibrium.
Decoherence on abelian topological order is modeled as a temporal defect in double TQFT driving boundary anyon condensation transitions classified by Lagrangian subgroups of the doubled order.
citing papers explorer
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Bridging Krylov Complexity and Universal Analog Quantum Simulator
Generalized Krylov complexity predicts the minimum time to realize target operations in analog quantum simulators such as Rydberg atom arrays.
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Scalable Quantum Interference from Indistinguishable Quantum Dots
A wavefront-shaping technique enables quantum interference from up to five indistinguishable quantum dots on the same chip.
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Kinetically constrained cavity QED: from blockaded ferromagnetism to long-range quantum scars
A blockade-restricted long-range model for Rydberg-cavity systems yields a distinct blockaded ferromagnetic/superradiant phase at equilibrium and long-range many-body scars with logarithmic entanglement dynamics out of equilibrium.
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Mixed-state topological order and the errorfield double formulation of decoherence-induced transitions
Decoherence on abelian topological order is modeled as a temporal defect in double TQFT driving boundary anyon condensation transitions classified by Lagrangian subgroups of the doubled order.