Entangling power of quantized chaotic systems
- 20 August 2001
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review E
- Vol. 64 (3) , 036207
- https://doi.org/10.1103/physreve.64.036207
Abstract
We study the quantum entanglement caused by unitary operators that have classical limits that can range from the near integrable to the completely chaotic. Entanglement in the eigenstates and time-evolving arbitrary states is studied through the von Neumann entropy of the reduced density matrices. We demonstrate that classical chaos can lead to substantially enhanced entanglement. Conversely, entanglement provides a useful characterization of quantum states in higher-dimensional chaotic or complex systems. Information about eigenfunction localization is stored in a graded manner in the Schmidt vectors, and the principal Schmidt vectors can be scarred by the projections of classical periodic orbits onto subspaces. The eigenvalues of the reduced density matrices is sensitive to the degree of wave-function localization, and is roughly exponentially arranged. We also point out the analogy with decoherence, as reduced density matrices corresponding to subsystems of fully chaotic systems, are diagonally dominant.Keywords
All Related Versions
This publication has 28 references indexed in Scilit:
- Signatures of chaos in the entanglement of two coupled quantum kicked topsPhysical Review E, 1999
- Quantum Dynamical Manifestation of Chaotic Behavior in the Process of EntanglementPhysical Review Letters, 1998
- Quantum computingReports on Progress in Physics, 1998
- Random matrix approach to quantum dissipationPhysical Review E, 1996
- Regular and Chaotic DynamicsPublished by Springer Nature ,1992
- The Transition to ChaosPublished by Springer Nature ,1992
- Simple models of quantum chaos: Spectrum and eigenfunctionsPhysics Reports, 1990
- Chaos in Classical and Quantum MechanicsPublished by Springer Nature ,1990
- The quantized Baker's transformationAnnals of Physics, 1989
- Quantization of linear maps on a torus-fresnel diffraction by a periodic gratingPhysica D: Nonlinear Phenomena, 1980