Entanglement preparation and non-reciprocal excitation evolution in giant atoms by controllable dissipation and coupling
Quantum Physics
2021-08-04 v2
Abstract
We investigate the dynamics of giant atom(s) in a waveguide QED scenario, where the atom couples to the coupled resonator waveguide via two sites. For a single giant atom setup, we find that the atomic dissipation rate can be adjusted by tuning its size. For the two giant atoms system, the waveguide will induce the controllable individual and collective dissipation as well as effective inter-atom coupling. As a result, we can theoretically realize the robust entangled state preparation and non-reciprocal excitation evolution. We hope our study can be applied in quantum information processing based on photonic and acoustic waveguide setup.
Keywords
Cite
@article{arxiv.2012.07003,
title = {Entanglement preparation and non-reciprocal excitation evolution in giant atoms by controllable dissipation and coupling},
author = {Hongwei Yu and Zhihai Wang and Jin-Hui Wu},
journal= {arXiv preprint arXiv:2012.07003},
year = {2021}
}
Comments
9 Pages, 4 Figures, Accepted by Phys. Rev. A