English

Arbitrary Control of Entanglement between two nitrogen-vacancy center ensembles coupling to superconducting circuit qubit

Quantum Physics 2018-01-31 v3

Abstract

We propose an effective scheme for realizing a Jaynes-Cummings (J-C) model with the collective nitrogen-vacancy center ensembles (NVE) bosonic modes in a hybrid system. Specifically, the controllable transmon qubit can alternatively interact with one of the two NVEs, which results in the production of NN particle entangled states. Arbitrary NN particle entangled states, NOON states, N-dimensional entangled states and entangled coherent states are demonstrated. Realistic imperfections and decoherence effects are analyzed via numerical simulation. Since no cavity photons or excited levels of the NV center are populated during the whole process, our scheme is insensitive to cavity decay and spontaneous emission of the NVE. The idea provides a scalable way to realize NVEs-circuit cavity quantum information processing with current technology.

Keywords

Cite

@article{arxiv.1704.09027,
  title  = {Arbitrary Control of Entanglement between two nitrogen-vacancy center ensembles coupling to superconducting circuit qubit},
  author = {Wanjun Su and Zhenbiao Yang and Zhirong Zhong},
  journal= {arXiv preprint arXiv:1704.09027},
  year   = {2018}
}

Comments

13 pages, 7 figures