Entanglement Dynamics of Two V-type Atoms with Dipole-Dipole Interaction in Dissipative Cavity
arXiv:2212.04650 · doi:10.1002/andp.202200659
Abstract
In this work, we study a coupled system of two V-type atoms with dipole-dipole interaction in a dissipative single-mode cavity, which couples with an external environment. We obtain the analytical solution of this model by solving the time dependent Schrodinger equation after we diagonalize Hamiltonian of dissipative cavity by introducing a set of new creation and annihilation operators according to Fano theorem. We also detailedly discuss the influences of cavity-environment coupling, spontaneously generated interference (SGI) parameter and dipole-dipole interaction between two atoms on entanglement dynamics under different initial states. The results show that the SGI parameter has different effects on entanglement dynamics under different initial states. Namely, the SGI parameter will increase the decay rate of the initially maximal entangled state and reduce that of the initially partial entangled state. For the initially product state, the larger SGI parameter corresponds to the more entanglement generated. The entanglement monotonically decreases under the weak cavity-environment coupling, while the oscillation of entanglement will occur under the strong cavity-environment coupling. The larger the dipole-dipole interaction is, the slower the entanglement decays and the more the entanglement will be generated. So the dipole-dipole interaction can not only protect and generate entanglement very effectively, but also enhance the regulation effect of the SGI parameter on entanglement.
12 pages, 9 figures
References in corpus (21)
- Experimental quantum teleportation
- Sudden Death of Entanglement
- Non-Markovian effects on the dynamics of entanglement
- Climbing the Jaynes-Cummings Ladder and Observing its Sqrt(n) Nonlinearity in a Cavity QED System
- Protecting entanglement via the quantum Zeno effect
- Entanglement negativity in quantum field theory
- Chip-to-chip quantum teleportation and multi-photon entanglement in silicon
- Tunable ion-photon entanglement in an optical cavity
- Deterministic generation of large cluster states using non-deterministic collective measurements based on quantum Zeno effect
- The effect of dipole-dipole interaction for two atoms with different couplings in non-Markovian environment
- A scalable network for simultaneous pairwise quantum key distribution via entanglement-based time-bin coding
- Catalytic quantum teleportation and beyond
- Decoherence effects in non-classicality tests of gravity
- Experimental entanglement generation for quantum key distribution beyond 1 Gbit/s
- Dynamics and Protecting of Entanglement in Two-Level Systems Interacting with a Dissipative Cavity: The Gardiner-Collett Approach
- Dynamics of Entanglement and Bell-nonlocality for Two Stochastic Qubits with Dipole-Dipole Interaction
- Scheme for realizing quantum dense coding via entanglement swapping
- Generation of long-living entanglement between two distant three-level atoms in non-Markovian environments
- Discord and entanglement in non-Markovian environments at finite temperature
- Entanglement dynamics of an open moving-biparticle system driven by classical-field
- Control of spontaneous emission of qubits from weak to strong coupling