English

Bipartite and Tripartite Entanglement for Three Damped Driven Qubits

Quantum Physics 2018-07-18 v1

Abstract

We investigate bipartite and tripartite entanglement in an open quantum system, specifically three qubits, all of which are damped, and one of which is driven. We adapt a systematic approach in calculating the entanglement of various bipartite splits usinga generalized concurrence as an indicator of entanglement. Our calculations are based on a direct detection scheme that is a particular unravelling of the density matrix. This system has a collective dipole-dipole energy shift that couples the atoms and the dissipation is via partially collective spontaneous emission described by the Lehmberg-Agarwal master equation.Our results are unravelling dependent, but apply to applications of entanglement based on direct detection. We also calculate the three-way tangle or residual entanglement for this system. We present calculations for a variety of driving and damping rates, and examine what decay rate is adequate for the system to be reduced to two qubits with a readout port. We also consider a specific model of three atoms located at particular positions in free space.

Keywords

Cite

@article{arxiv.1807.06178,
  title  = {Bipartite and Tripartite Entanglement for Three Damped Driven Qubits},
  author = {William Konyk and Ethan Stanifer and Habtom Woldekristos and James Clemens and Perry Rice},
  journal= {arXiv preprint arXiv:1807.06178},
  year   = {2018}
}
R2 v1 2026-06-23T03:03:36.109Z