English

Quantum transduction with microwave and optical entanglement

Quantum Physics 2022-02-10 v1

Abstract

Quantum transduction refers to the coherent conversion between microwave and optical states, which can be achieved by quantum teleportation if given high fidelity microwave-optical entanglement, namely entanglement-based quantum transduction. Reliable microwave-optical entanglement can be generated using various platforms. In this paper, we base the discussion on piezo-optomechanical system and make the teleportation induced conversion scheme more concrete in the framework of quantum channel theory. By comparing the quantum capacity between the entanglement-based conversion channel and the traditional direct quantum transduction channel, we show entanglement-based scheme indeed admits a positive transduction rate when the direct quantum transduction has zero quantum capacity. Given two piezo-optomechanical systems, we also investigate the generation of microwave-microwave entanglement from entanglement swapping within continuous variable and discrete variable settings, showing the potentials of directly connecting microwave quantum processor by microwave-microwave quantum teleportation.

Keywords

Cite

@article{arxiv.2202.04601,
  title  = {Quantum transduction with microwave and optical entanglement},
  author = {Changchun Zhong and Xu Han and Liang Jiang},
  journal= {arXiv preprint arXiv:2202.04601},
  year   = {2022}
}
R2 v1 2026-06-24T09:28:42.902Z