English

Parity-time-symmetric two-qubit system: entanglement and sensing

Quantum Physics 2023-05-31 v1

Abstract

In this paper we study exceptional-point (EP) effects and quantum sensing in a parity-time (PT)-symmetric two-qubit system with the Ising-type interaction. We explore EP properties of the system by analyzing degeneracy of energy eigenvalues or entanglement of eigenstates. We investigate entanglement dynamics of the two qubits in detail. In particular, we demonstrate that the system can create the steady-state entanglement in the PT-broken phase and collapse-revival phenomenon of entanglement in the PT-symmetric phase during the long-time evolution. We show that entanglement can be generated more quickly than the corresponding Hermitian system. Finally, we prove that the sensitivity of eigenstate quantum sensing for the parameters exhibits the remarkable enharncement at EPs, and propose a quantum-coherence measurement to witness the existence of EPs.

Keywords

Cite

@article{arxiv.2305.19034,
  title  = {Parity-time-symmetric two-qubit system: entanglement and sensing},
  author = {J. Zhang and Y. L. Zhou and Y. L. Zuo and P. X. Chen and H. Jing and L. M. Kuang},
  journal= {arXiv preprint arXiv:2305.19034},
  year   = {2023}
}

Comments

11 pages, 9 figures