Entanglement dynamics of a two-qubit system coupled individually to Ohmic baths
arXiv:1306.1610 · doi:10.1063/1.4816122
Abstract
Developed originally for the Holstein polaron, the Davydov D1 ansatz is an efficient, yet extremely accurate trial state for time-dependent variation of the spin-boson model [J. Chem. Phys. 138, 084111 (2013)]. In this work, the Dirac-Frenkel time-dependent variational procedure utilizing the Davydov D1 ansatz is implemented to study entanglement dynamics of two qubits under the influence of two independent baths. The Ohmic spectral density is used without the Born-Markov approximation or the rotating-wave approximation. In the strong coupling regime finite-time disentanglement is always found to exist, while at the intermediate coupling regime, the entanglement dynamics calculated by Davydov D1 ansatz displays oscillatory behavior in addition to entanglement disappearance and revival.
8 pages, 3 figures
References in corpus (11)
- Finite-Time Disentanglement via Spontaneous Emission
- Sudden Death of Entanglement
- Non-Markovian effects on the dynamics of entanglement
- Quantum Open System Theory: Bipartite Aspects
- Sudden Birth Versus Sudden Death of Entanglement in Multipartite Systems
- Heralded Entanglement between Atomic Ensembles: Preparation, Decoherence, and Scaling
- Entanglement dynamics of two independent qubits in environments with and without memory
- Numerical Renormalization Group for Bosonic Systems and Application to the Subohmic Spin-Boson Model
- Long-Lived Electronic Coherence in Dissipative Exciton-Dynamics of Light-Harvesting Complexes
- Non-Markovian disentanglement dynamics of two-qubit system
- Sudden death and birth of entanglement beyond the Markovian approximation
Cited by in corpus (14)
- Variational dynamics of the sub-Ohmic spin-boson model on the basis of multiple Davydov states
- Steady-state entanglement and coherence of the coupled qubit system in equilibrium and nonequilibrium environments
- Ground state properties of sub-Ohmic spin-boson model with simultaneous diagonal and off-diagonal coupling
- Symmetry and the critical phase of the two-bath spin-boson model: Ground-state properties
- Manipulating entanglement sudden death in two coupled two-level atoms interacting off-resonance with a radiation field: an exact treatment
- Sub-Ohmic spin-boson model with off-diagonal coupling: Ground state properties
- Entanglement witness and entropy uncertainty of open Quantum systems under Zeno effect
- Zeno and anti-Zeno effect in an open quantum system in the ultrastrong-coupling regime
- Quantum thermalization and vanishing thermal entanglement in the open Jaynes-Cummings model
- Asymptotic entanglement sudden death in two atoms with dipole-dipole and Ising interactions coupled to a radiation field at non-zero detuning
- Steady state current fluctuations and dynamical control in a nonequilibrium single-site Bose-Hubbard system
- Entanglement dynamics and performance of two-qubit gates for superconducting qubits under non-Markovian effects
- -Symmetric Spin--Boson Model with a Continuous Bosonic Spectrum: Exceptional Points and Dynamics
- Heat currents in qubit systems