Publication Date:
2006
abstract:
In a previous paper the generalized Schroedinger equation that governs wave propagation in a rapidly-spun fiber was derived. In this paper the aforementioned equation is used to study four-wave mixing (FWM). The properties of FWM associated with a rapidly-spun fiber are described, and contrasted to those associated with constantly-birefringent and randomly-birefringent fibers. FWM driven by perpendicular linearly-polarized pump waves, or counter-rotating circularly-polarized pump waves, provides polarization-independent signal amplification and phase-conjugation, whereas FWM driven by co-rotating circularly-polarized pump waves provides polarization-independent frequency conversion.
Iris type:
01.01 Articolo in rivista
Keywords:
OPTICAL PARAMETRIC-AMPLIFIERS; BIREFRINGENT FIBERS; MODULATIONAL INSTABILITY; POLARIZATION; AMPLIFICATION
List of contributors:
Schenato, Luca
Published in: