IEEE Photonics Technology Letters · 2000 · 63 citations · 9 references
PhotonicsRandom Coupling-length BasisEngineeringMultimaterial FiberOptical Transmission SystemFiber StructureOptical PropertiesFiber-optic CommunicationPr IdFiber OpticsComputational ElectromagneticsDispersionFiber OpticEmulator DevicePolarization-mode Dispersion
The random coupling-length basis was used in the numerical simulation of single-mode fibers (SMF's) with the coarse step method. We show that a single set of coupling lengths, angles and phases accounts for both, the Maxwellian statistics and the nonperiodical differential group delay spectral dependence in agreement with experimental observations. An SMF and a polarization mode dispersion (PR ID) emulator were both measured and simulated. The comparison between the experimental results and numerical simulations shows that the random coupling-lengths mathematical model and the emulator device provide good descriptions either for the first-order PMD statistics or second-order PMD, being powerful tools for the simulation of signal distortion.
9
Stability of solitons in randomly varying birefringent fibers
P. K. A. Wai, C. R. Menyuk, H. H. Chen · Optics Letters · 1991 · 245 citations