SciPost Physics · 2022 · 25 citations · 54 references
Quantum DynamicEngineeringMany-body Quantum PhysicLocal NoiseQuantum ComputingQuantum Mechanical PropertyQuantum MaterialsQuantum EntanglementAnderson InsulatorQuantum SciencePhysicsEntanglement GrowthEntropyNatural SciencesTopological InsulatorApplied PhysicsCondensed Matter PhysicsDisordered Quantum SystemQuantum SystemQuantum ChaosOne-dimensional Anderson Insulator
We study the dynamical behavior of the one-dimensional Anderson insulator in the presence of a local noise. We show that the noise induces logarithmically slow energy and entanglement growth, until the system reaches an infinite-temperature state, where both quantities saturate to extensive values. The saturation value of the entanglement entropy approaches the average entanglement entropy over all possible product states. At infinite temperature, we find that a density excitation spreads logarithmically with time, without any signs of asymptotic diffusive behavior. In addition, we provide a theoretical picture which qualitatively reproduces the phenomenology of particle transport.
54
Patrick A. Lee, T. V. Ramakrishnan · Reviews of Modern Physics · 1985 · 6K citations
Conduction in non-crystalline materials
N. F. Mott · Philosophical magazine · 1969 · 3.5K citations