English

Engineering entangled microwave photon states via multiphoton interactions between two cavity fields and a superconducting qubit

Quantum Physics 2016-11-22 v3

Abstract

It has been shown that there are not only transverse but also longitudinal couplings between microwave fields and a superconducting qubit with broken inversion symmetry of the potential energy. Using multiphoton processes induced by longitudinal coupling fields and frequency matching conditions, we design a universal algorithm to produce arbitrary superpositions of two-mode photon states of microwave fields in two separated transmission line resonators, which are coupled to a superconducting qubit. Based on our algorithm, we analyze the generation of evenly-populated states and NOON states. Compared to other proposals with only single-photon process, we provide an efficient way to produce entangled microwave states when the interactions between superconducting qubits and microwave fields are in the ultrastrong regime.

Keywords

Cite

@article{arxiv.1506.06363,
  title  = {Engineering entangled microwave photon states via multiphoton interactions between two cavity fields and a superconducting qubit},
  author = {Yan-Jun Zhao and Chang-Qing Wang and Xiaobo Zhu and Yu-xi Liu},
  journal= {arXiv preprint arXiv:1506.06363},
  year   = {2016}
}
R2 v1 2026-06-22T09:57:28.410Z