16 research outputs found
Exact solutions for four-wave mixing crosstalk in one-pump fiber optical parametric amplifiers
The exact solution of the two coupled differential equations governing a FWM component and its associated idler in a one-pump fiber OPA consist of a sum of exponentials. First- and second-order crosstalk terms scale like the corresponding powers of the signal power. ©2008 IEEE.6970Chavez Boggio, J.M., Marconi, J.D., Fragnito, H.L., (2006) Opt. Comm, 259, pp. 94-103Blows, J.L., (2004) Opt. Comm, 236, pp. 115-12
Fiber optical parametric amplifiers in optical communication systems
The prospects for using fiber optical parametric amplifiers (OPAs) in optical communication systems are reviewed. Phase-insensitive amplifiers (PIAs) and phase-sensitive amplifiers (PSAs) are considered. Low-penalty amplification at/or near 1 Tb/s has been achieved, for both wavelength- and time-division multiplexed formats. High-quality mid-span spectral inversion has been demonstrated at 0.64 Tb/s, avoiding electronic dispersion compensation. All-optical amplitude regeneration of amplitude-modulated signals has been performed, while PSAs have been used to demonstrate phase regeneration of phase-modulated signals. A PSA with 1.1-dB noise figure has been demonstrated, and preliminary wavelength-division multiplexing experiments have been performed with PSAs. 512 Gb/s have been transmitted over 6,000 km by periodic phase conjugation. Simulations indicate that PIAs could reach data rate x reach products in excess of 14,000 Tb/s Ă— km in realistic wavelength-division multiplexed long-haul networks. Technical challenges remaining to be addressed in order for fiber OPAs to become useful for long-haul communication networks are discussed
Fiber optical parametric amplifier in high-speed WDM networks
We report high-capacity (> 1 Tb/s) amplification by a fiber optical parametric amplifier in different roles displaying compatibility and versatility in future WDM networks with phase-shift keying modulation format
1-Tb/s DWDM amplification in a fiber optical parametric amplifier
We report less than 1-dB cross-talk penalty for 26 DWDM channels modulated at 43.7 Gb/s RZ-DPSK when amplified by a fiber optical parametric amplifier showing compatibility with high-capacity (> 1 Tb/s) communication systems. © 2010 Optical Society of America