Dilated RNN wave functions induce power-law correlations for the critical 1D transverse-field Ising model and the Cluster state, unlike the exponential decay of conventional RNN ansatze.
Observation of a many-body dynami- cal phase transition with a 53-qubit quantum simulator,
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Non-Abelian symmetries and unentangled initial states block full Haar randomization in unitary quantum dynamics, leaving finite deviations in late-time entanglement entropy.
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Geometry-Induced Long-Range Correlations in Recurrent Neural Network Quantum States
Dilated RNN wave functions induce power-law correlations for the critical 1D transverse-field Ising model and the Cluster state, unlike the exponential decay of conventional RNN ansatze.
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Quantum state randomization constrained by non-Abelian symmetries
Non-Abelian symmetries and unentangled initial states block full Haar randomization in unitary quantum dynamics, leaving finite deviations in late-time entanglement entropy.