Nonergodic delocalized paramagnetic states in quantum neural networks
@inproceedings{Wu2022NonergodicDP, title={Nonergodic delocalized paramagnetic states in quantum neural networks}, author={Shuohang Wu and Zi Cai}, year={2022} }
Typically, it is assumed that a high-energy eigenstate of a generic interacting quantum many-body Hamiltonian is thermal and obeys the eigenstate thermalization hypothesis. In this work, we show that the paramagnetic phase of a quantum Hopfield neural network model is delocalized but nonergodic. The combination of permutational symmetry and frustration in this model organize its high-energy eigenstates into clusters, which can each be considered a large quantum spin and has no correlation with…
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