Mechanism of entanglement preservation
arXiv:0910.5622 · doi:10.1103/PhysRevA.81.052330
Abstract
We study the entanglement preservation of two qubits locally interacting with their reservoirs. We show that the existence of a bound state of the qubit and its reservoir and the non-Markovian effect are two essential ingredients and their interplay plays a crucial role in preserving the entanglement in the steady state. When the non-Markovian effect is neglected, the entanglement sudden death (ESD) is reproduced. On the other hand, when the non-Markovian is significantly strong but the bound state is absent, the phenomenon of the ESD and its revival is recovered. Our formulation presents a unified picture about the entanglement preservation and provides a clear clue on how to preserve the entanglement in quantum information processing.
6 pages, 6 figures. To appear in Phys. Rev. A
References in corpus (14)
- Quantum nature of a strongly-coupled single quantum dot-cavity system
- Finite-Time Disentanglement via Spontaneous Emission
- Quantum States and Phases in Driven Open Quantum Systems with Cold Atoms
- Sudden Death of Entanglement
- Non-Markovian effects on the dynamics of entanglement
- Protecting entanglement via the quantum Zeno effect
- Non-Markovian quantum jumps
- Entanglement dynamics of two independent qubits in environments with and without memory
- Mesoscopic Spin-Boson Models of Trapped Ions
- Fast Electrical Control of a Quantum Dot Strongly Coupled to a Nano-resonator
- Universal phase shift and non-exponential decay of driven single-spin oscillations
- Photon correlation vs interference of single-atom fluorescence in a half-cavity
- Driving-dependent damping of Rabi oscillations in two-level semiconductor systems
- Dissipation control in cavity QED with oscillating mode-structures
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- Quantum metrology in the noisy intermediate-scale quantum era
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- Exact decoherence-free state of two distant quantum systems in a non-Markovian environment
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- Bound state and non-Markovian dynamics of a quantum emitter around a surface plasmonic nanostructure
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- Robust fermionic-mode entanglement of a nanoelectronic system in non-Markovian environments
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- Exceptional point induced quantum phase synchronization and entanglement dynamics in mechanically coupled gain-loss oscillators
- Quantum speedup, non-Markovianity and formation of bound state
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- Non-Markovian Dynamics of a Single Excitation within Many-Body Dissipative Systems
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- Entanglement instability in the interaction of two qubits with a common non-Markovian environment
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- Classical-driving-assisted quantum synchronization in non-Markovian environments
- Entanglement evolution in multipartite cavity-reservoir systems under local unitary operations
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- Generation of entanglement density within a reservoir
- Non-Markovian effect on quantum optical metrology under dissipative environment
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- Quantumness and speedup limit of a qubit under transition frequency modulation
- Restoring metrological quantum advantage of measurement precision in noisy scenario
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- Multiple-scale integro-differential perturbation method for generic non-Markovian environments
- Initial states of qubit-boson models leading to conserved quantities
- Effective Hamiltonian approach to the quantum phase transitions in the extended Jaynes-Cummings model
- Qubit-Photon Bound States in Superconducting Metamaterials
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- Effective Hamiltonian approach to the exact dynamics of open system by complex discretization approximation for environment