All-optical phase and amplitude regenerator for next-generation telecommunications systems


Autoria(s): Slavik, Radan; Parmigiani, Francesca; Kakande, Joseph; Lundström, Carl; Sjödin, Martin; Andrekson, Peter A.; Weerasuriya, Ruwan; Sygletos, Stylianos; Ellis, Andrew D.; Grüner-Nielsen, Lars; Jakobsen, Dan; Herstrøm, Søren; Phelan, Richard; O'Gorman, James; Bogris, Adonis; Syvridis, Dimitris; Dasgupta, Sonali; Petropoulos, Periklis; Richardson, David J.
Data(s)

05/09/2010

Resumo

Fibre-optic communications systems have traditionally carried data using binary (on-off) encoding of the light amplitude. However, next-generation systems will use both the amplitude and phase of the optical carrier to achieve higher spectral efficiencies and thus higher overall data capacities(1,2). Although this approach requires highly complex transmitters and receivers, the increased capacity and many further practical benefits that accrue from a full knowledge of the amplitude and phase of the optical field(3) more than outweigh this additional hardware complexity and can greatly simplify optical network design. However, use of the complex optical field gives rise to a new dominant limitation to system performance-nonlinear phase noise(4,5). Developing a device to remove this noise is therefore of great technical importance. Here, we report the development of the first practical ('black-box') all-optical regenerator capable of removing both phase and amplitude noise from binary phase-encoded optical communications signals.

Formato

application/pdf

Identificador

http://eprints.aston.ac.uk/18077/1/All_optical_phase_and_amplitude_regenerator.pdf

Slavik, Radan; Parmigiani, Francesca; Kakande, Joseph; Lundström, Carl; Sjödin, Martin; Andrekson, Peter A.; Weerasuriya, Ruwan; Sygletos, Stylianos; Ellis, Andrew D.; Grüner-Nielsen, Lars; Jakobsen, Dan; Herstrøm, Søren; Phelan, Richard; O'Gorman, James; Bogris, Adonis; Syvridis, Dimitris; Dasgupta, Sonali; Petropoulos, Periklis and Richardson, David J. (2010). All-optical phase and amplitude regenerator for next-generation telecommunications systems. Nature Photonics, 4 (10), pp. 690-695.

Relação

http://eprints.aston.ac.uk/18077/

Tipo

Article

PeerReviewed