English

Quantum state transfer and controlled-phase gate on one-dimensional superconducting resonators assisted by a quantum bus

Quantum Physics 2016-02-12 v2

Abstract

We propose a quantum processor for the scalable quantum computation on microwave photons in distant one-dimensional superconducting resonators. It is composed of a common resonator R acting as a quantum bus and some distant resonators rjr_j coupled to the bus in different positions assisted by superconducting quantum interferometer devices (SQUID), different from previous processors. R is coupled to one transmon qutrit, and the coupling strengths between rjr_j and R can be fully tuned by the external flux through the SQUID. To show the processor can be used to achieve universal quantum computation effectively, we present a scheme to complete the high-fidelity quantum state transfer between two distant microwave-photon resonators and another one for the high-fidelity controlled-phase gate on them. By using the technique for catching and releasing the microwave photons from resonators, our processor may play an important role in quantum communication as well.

Keywords

Cite

@article{arxiv.1507.00069,
  title  = {Quantum state transfer and controlled-phase gate on one-dimensional superconducting resonators assisted by a quantum bus},
  author = {Ming Hua and Ming-Jie Tao and Fu-Guo Deng},
  journal= {arXiv preprint arXiv:1507.00069},
  year   = {2016}
}

Comments

11 pages, 4 figures, one column

R2 v1 2026-06-22T10:03:26.597Z