The entanglement dynamics of interacting qubits embedded in a spin environment with Dzyaloshinsky-Moriya term
arXiv:1002.4476 · doi:10.1140/epjd/e2010-00056-1
Abstract
We investigate the entanglement dynamics of two interacting qubits in a spin environment, which is described by an XY model with Dzyaloshinsky-Moriya (DM) interaction. The competing effects of environmental noise and interqubit coupling on entanglement generation for various system parameters are studied. We find that the entanglement generation is suppressed remarkably in weak-coupling region at quantum critical point (QCP). However, the suppression of the entanglement generation at QCP can be compensated both by increasing the DM interaction and by decreasing the anisotropy of the spin chain. Beyond the weak-coupling region, there exist resonance peaks of concurrence when the system-bath coupling equals to external magnetic field. We attribute the presence of resonance peaks to the flat band of the self-Hamiltonian. These peaks are highly sensitive to anisotropy parameter and DM interaction.
8 pages, 9 figures
References in corpus (9)
- Sudden Death of Entanglement
- Effective spin systems in coupled micro-cavities
- Disentanglement in a quantum critical environment
- Universal geometric entanglement close to quantum phase transitions
- Universal decoherence induced by an environmental quantum phase transition
- Pseudoscalar glueball mass from -- mixing
- Disentanglement of two qubits coupled to an XY spin chain: Role of quantum phase transition
- Induced Entanglement Enhanced by Quantum Criticality
- Entanglement Creation and Storage in Two Qubits Coupling to an Anisotropic Heisenberg Spin Chain
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