Entanglement induced by spontaneous emission in spatially extended two-atom systems
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Publication:4458379
DOI10.1080/09500340308234584zbMath1049.81068arXivquant-ph/0302124OpenAlexW2139661116MaRDI QIDQ4458379
Publication date: 17 March 2004
Published in: Journal of Modern Optics (Search for Journal in Brave)
Full work available at URL: https://arxiv.org/abs/quant-ph/0302124
Electromagnetic interaction; quantum electrodynamics (81V10) Quantum optics (81V80) Atomic physics (81V45) Molecular physics (81V55)
Related Items (12)
Entanglement criteria of two two-level atoms interacting with two coupled modes ⋮ Dynamics of quantum entanglement in de Sitter spacetime and thermal Minkowski spacetime ⋮ Entanglement generation and protection for two atoms in the presence of two parallel mirrors ⋮ Entanglement sudden birth and sudden death in a system of two distant atoms coupled via an optical element ⋮ Qubit-qubit entanglement dynamics control via external classical pumping and Kerr nonlinearity mediated by a single detuned cavity field powered by two-photon processes ⋮ Spontaneously induced atom–radiation entanglement in an ensemble of trapped two-level atoms ⋮ Generation of Werner states and preservation of entanglement in a noisy environment ⋮ Spontaneous emission of atomic systems in the presence of incident fields ⋮ Entanglement dynamics for two-level quantum systems coupled with massive scalar fields ⋮ Entanglement dynamics for Unruh-DeWitt detectors interacting with massive scalar fields: the Unruh and anti-Unruh effects ⋮ Controlling entanglement dynamics of two qubits coupled to a common reservoir via a coherent field ⋮ Quantum correlations of two two-level atoms interacting with a single mode vacuum field
Cites Work
- Entangled states and collective nonclassical effects in two-atom systems
- Separability criterion and inseparable mixed states with positive partial transposition.
- Entangling two qubits by dissipation
- Separability Criterion for Density Matrices
- Entanglement of Formation of an Arbitrary State of Two Qubits
- Coherence in Spontaneous Radiation Processes
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