All publications
2024

Achieving Strong Magnon Blockade through Magnon Squeezing in a Cavity Magnetomechanical System

AAnnalen der Physik
M. Amazioug, D. Dutykh, B. Teklu and M. Asjad
Annalen der Physik 536(4): 2300357 (2024)
Open Access
arXiv VersionDOI

Abstract

We propose a scheme to achieve magnon (photon) blockade by using magnon squeezing within a cavity magnomechanical system under weak pump driving. Under ideal conditions, we observe a substantial magnon blockade effect, as well as simultaneous photon blockade. Moreover, both numerical and analytical results match perfectly, providing robust evidence of consistency. In addition to calculating optimal parametric gain and detuning values, we can improve the second-order correlation function. The proposed scheme will be a pioneering approach towards magnon (photon) blockade in experimental cavity magnomechanical systems.

Keywords

quant-ph

Bibliographic record

Journal: Annalen der Physik
Volume: 536
Issue: 4
Pages: 2300357
arXiv: 2308.06367

BibTeX Citation

@article{Amazioug2024achievingstrong,
  author = {Amazioug, M. and Dutykh, D. and Teklu, B. and Asjad, M.},
  title = {Achieving Strong Magnon Blockade through Magnon Squeezing in a Cavity Magnetomechanical System},
  journal = {Annalen der Physik},
  year = {2024},
  volume = {536},
  number = {4},
  pages = {2300357},
  doi = {10.1002/andp.202300357},
  abstract = {We propose a scheme to achieve magnon (photon) blockade by using magnon squeezing within a cavity magnomechanical system under weak pump driving. Under ideal conditions, we observe a substantial magnon blockade effect, as well as simultaneous photon blockade. Moreover, both numerical and analytical results match perfectly, providing robust evidence of consistency. In addition to calculating optimal parametric gain and detuning values, we can improve the second-order correlation function. The proposed scheme will be a pioneering approach towards magnon (photon) blockade in experimental cavity magnomechanical systems.},
  keywords = {quant-ph}
}