Quenching and generation of random states in a kicked Ising model
arXiv:1305.5129 · doi:10.1209/0295-5075/105/10002
Abstract
The kicked Ising model with both a pulsed transverse and a continuous longitudinal field is studied numerically. Starting from a large transverse field and a state that is nearly an eigenstate, the pulsed transverse field is quenched with a simultaneous enhancement of the longitudinal field. The generation of multipartite entanglement is observed along with a phenomenon akin to quantum resonance when the entanglement does not evolve for certain values of the pulse duration. Away from the resonance, the longitudinal field can drive the entanglement to near maximum values that is shown to agree well with those of random states. Further evidence is presented that the time evolved states obtained do have some statistical properties of such random states. For contrast the case when the fields have a steady value is also discussed.
7 pages, 7 figures
References in corpus (7)
- Entanglement Spectrum as a Generalization of Entanglement Entropy: Identification of Topological Order in Non-Abelian Fractional Quantum Hall Effect States
- The mother of all protocols: Restructuring quantum information's family tree
- Experimental Realization of Quantum-Resonance Ratchets
- Entangling power of the quantum baker's map
- Entanglement, avoided crossings and quantum chaos in an Ising model with a tilted magnetic field
- Linear response as a singular limit for a periodically driven closed quantum system
- Spin-1/2 Heisenberg ladder: variation of entanglement and fidelity measures close to quantum critical points
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