Manipulation of multimode squeezing in a coupled waveguide array
Author(s)
Rojas-Rojas, S.; Barriga, E.; Muñoz, C.; Solano, P.; Hermann-Avigliano, C.
DownloadPhysRevA.100.023841.pdf (816.6Kb)
Terms of use
Metadata
Show full item recordAbstract
We present a scheme for generating and manipulating three-mode squeezed states with genuine tripartite entanglement by injecting single-mode squeezed light into an array of coupled optical waveguides. We explore the possibility to selectively generate single-mode squeezing or multimode squeezing at the output of an elliptical waveguide array, determined solely by the input light polarization. We study the effect of losses in the waveguide array and show that quantum correlations and squeezing are preserved for realistic parameters. Our results show that arrays of optical waveguides are suitable platforms for generating multimode quantum light, which could lead to novel applications in quantum metrology.
Date issued
2019-08-26Department
Massachusetts Institute of Technology. Department of Physics; MIT-Harvard Center for Ultracold Atoms; Massachusetts Institute of Technology. Research Laboratory of ElectronicsPublisher
American Physical Society
Citation
Phys. Rev. A 100, 023841 (2019)
Version: Final published version