Entanglement Dynamics From Random Product States: Deviation From Maximal
Entanglement
- URL: http://arxiv.org/abs/2102.07584v3
- Date: Tue, 11 Jan 2022 23:46:16 GMT
- Title: Entanglement Dynamics From Random Product States: Deviation From Maximal
Entanglement
- Authors: Yichen Huang
- Abstract summary: We study the entanglement dynamics of quantum many-body systems.
Our results highlight the difference between the entanglement generated by (chaotic) Hamiltonian dynamics and that of random states.
- Score: 2.741266294612776
- License: http://arxiv.org/licenses/nonexclusive-distrib/1.0/
- Abstract: We study the entanglement dynamics of quantum many-body systems and prove the
following: (I) For any geometrically local Hamiltonian on a lattice, starting
from a random product state the entanglement entropy is bounded away from the
maximum entropy at all times with high probability. (II) In a spin-glass model
with random all-to-all interactions, starting from any product state the
average entanglement entropy is bounded away from the maximum entropy at all
times. We also extend these results to any unitary evolution with charge
conservation and to the Sachdev-Ye-Kitaev model. Our results highlight the
difference between the entanglement generated by (chaotic) Hamiltonian dynamics
and that of random states, for the latter is nearly maximal.
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