Title :
Cascadability Properties of Optical 3R Regenerators Based on SOAs
Author :
Gavioli, Giancarlo ; Thomsen, Benn C. ; Mikhailov, Vitaly ; Bayvel, Polina
Author_Institution :
Univ. Coll. London, London
Abstract :
This paper assesses the regenerative properties of nonlinear semiconductor optical amplifier (SOA)-based optical regenerators cascaded in high-speed transmission networks. It is shown that the fundamental condition that must be ensured to maintain optimum and constant regenerative properties along a chain of concatenated nonlinear optical regenerators is that the extinction ratio at the input of each regenerator is kept constant. This condition determines an important requirement on the regenerator; signal reshaping and noise suppression must take place while performing the necessary extinction ratio enhancement to maintain cascadability. Starting from the SOA nonlinear transfer function, we derive the relationship between the extinction ratio enhancement and the noise suppression for different SOA-based gate configurations and assess their cascadability properties. This analysis is supported by experimental results of transmission with cascaded optical regeneration in a reconfigurable transmission network over transoceanic distances on standard fiber.
Keywords :
optical communication equipment; optical fibre communication; optical repeaters; semiconductor optical amplifiers; all-optical switching; cascadability property; extinction ratio enhancement; high-speed transmission network; noise suppression; nonlinear transfer function; optical 3R regenerator; semiconductor optical amplifier; signal reshaping; transoceanic standard optical fiber; wavelength conversion; Extinction ratio; Fiber nonlinear optics; High speed optical techniques; Nonlinear optics; Optical fiber networks; Optical noise; Repeaters; Semiconductor device noise; Semiconductor optical amplifiers; Signal to noise ratio; All-optical switching; regeneration; semiconductor optical amplifiers (SOAs); transmission; wavelength conversion;
Journal_Title :
Lightwave Technology, Journal of
DOI :
10.1109/JLT.2007.902116