The Rise and Fall of Redundancy in Decoherence and Quantum Darwinism
arXiv:1205.3197 · doi:10.1088/1367-2630/14/8/083010
Abstract
A state selected at random from the Hilbert space of a many-body system is overwhelmingly likely to exhibit highly non-classical correlations. For these typical states, half of the environment must be measured by an observer to determine the state of a given subsystem. The objectivity of classical reality-the fact that multiple observers can agree on the state of a subsystem after measuring just a small fraction of its environment-implies that the correlations found in nature between macroscopic systems and their environments are very exceptional. Building on previous studies of quantum Darwinism showing that highly redundant branching states are produced ubiquitously during pure decoherence, we examine conditions needed for the creation of branching states and study their demise through many-body interactions. We show that even constrained dynamics can suppress redundancy to the values typical of random states on relaxation timescales, and prove that these results hold exactly in the thermodynamic limit.
20 pages, 5 figures. Typos fixed
References in corpus (6)
- Quantum Darwinism
- A Sharp Fannes-type Inequality for the von Neumann Entropy
- A simple example of "Quantum Darwinism": Redundant information storage in many-spin environments
- Quantum Darwinism in a hazy environment
- Quantum Darwinism in quantum Brownian motion: the vacuum as a witness
- Quasiclassical Coarse Graining and Thermodynamic Entropy
Cited by in corpus (10)
- Quantum Decoherence
- Quantum Theory of the Classical: Einselection, Envariance, Quantum Darwinism and Extantons
- Collisional unfolding of quantum Darwinism
- The role of information back-flow in the emergence of quantum Darwinism
- Redundancy of einselected information in quantum Darwinism: The irrelevance of irrelevant environment bits
- Correlations, information backflow, and objectivity in a class of pure dephasing models
- Redundant information encoding in QED during decoherence
- Classical branches and entanglement structure in the wavefunction of cosmological fluctuations
- Emergence of outcomes in quantum mechanics
- Many-body localization and the emergence of quantum darwinism