Entanglement and Fast Quantum Thermalization in Heavy Ion Collisions
arXiv:1506.03696 · doi:10.1142/S0217732316501108
Abstract
Let be subsystem of a larger system , and be a typical state from the subspace of the Hilbert space satisfying an energy constraint. Then is nearly thermal. We discuss how this observation is related to fast thermalization of the central region () in heavy ion collisions, where represents other degrees of freedom (soft modes, hard jets, collinear particles) outside of . Entanglement between the modes in and plays a central role: the entanglement entropy increases rapidly in the collision. In gauge-gravity duality, is related to the area of extremal surfaces in the bulk, which can be studied using gravitational duals.
4 pages, 2 figures, v3: version to appear in MPLA. arXiv admin note: text overlap with arXiv:1205.1584
References in corpus (5)
- Holography and colliding gravitational shock waves in asymptotically AdS_5 spacetime
- Holographic Evolution of Entanglement Entropy
- Long-Time Behavior of Macroscopic Quantum Systems: Commentary Accompanying the English Translation of John von Neumann's 1929 Article on the Quantum Ergodic Theorem
- Extremely quick thermalization in a macroscopic quantum system for a typical nonequilibrium subspace
- Measuring Black Hole Formations by Entanglement Entropy via Coarse-Graining
Cited by in corpus (13)
- Standard Model Physics and the Digital Quantum Revolution: Thoughts about the Interface
- Entanglement Suppression and Emergent Symmetries of Strong Interactions
- Quantum Simulating Nature's Fundamental Fields
- Entanglement Rearrangement in Self-Consistent Nuclear Structure Calculations
- Dynamics of entanglement in expanding quantum fields
- Geometric Quantum Information Structure in Quantum Fields and their Lattice Simulation
- Entanglement between Valence and Sea Quarks in Hadrons of 1+1 Dimensional QCD
- Quantum Simulations of SO(5) Many-Fermion Systems using Qudits
- Gibbs entropy from entanglement in electric quenches
- Quantum Entanglement and Thermal Behavior in Charged-Current Weak Interactions
- Entanglement Structures in Quantum Field Theories II: Distortions of Vacuum Correlations Through the Lens of Local Observers
- Entanglement Properties of SU(2) Gauge Theory
- Identification of a natural fieldlike entanglement resource in trapped-ion chains