Title :
Coherent Array of Nonlinear Regenerative Fiber Amplifiers
Author :
Corcoran, Christopher J. ; Durville, Frederic ; Pasch, Kenneth A.
Author_Institution :
Corcoran Eng., Inc., Newton
fDate :
3/1/2008 12:00:00 AM
Abstract :
A coherent array of high power fiber amplifiers (lasers) with a nonlinear refractive index is described and discussed. By adding reflectivity to the inputs of the fibers, each fiber laser is transformed into a regenerative amplifier, with an internal circulating power that varies depending on the round trip phase shift of the field within the fiber. The variation of the internal circulating power results in a preferential shift in the output phase of each amplifier due to the high nonlinearity within the fiber. The resulting phase shift is predicted to substantially compensate for the inherent randomness in the output phase distribution usually associated with the long lengths of fiber amplifiers. The individual outputs of the coherent array are shown to exhibit a ldquofuzzyrdquo phase distribution that can be partially quantified based on a statistical analysis and is dependent on the parameters of the array. A simple example is given of a coherent array of fiber lasers in a Self-Fourier cavity and the degree of coherence is predicted under simplifying assumptions.
Keywords :
laser arrays; optical fibre amplifiers; refractive index; coherent laser array; fiber laser array; fuzzy phase distribution; high power fiber amplifier coherent array; injection locked amplifiers; internal circulating power; nonlinear optics; nonlinear refractive index; nonlinear regenerative fiber amplifier; phase-locked oscillators; regenerative oscillator; self-Fourier cavity; Distributed amplifiers; Fiber lasers; High power amplifiers; Optical arrays; Phased arrays; Power amplifiers; Power lasers; Reflectivity; Refractive index; Statistical analysis; Coherent laser array; fiber amplifier; fiber laser; injection locked amplifiers; nonlinear optics; phase-locked oscillators; regenerative oscillator;
Journal_Title :
Quantum Electronics, IEEE Journal of
DOI :
10.1109/JQE.2007.912461