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Decomposition of group-velocity-locked-vector-dissipative solitons and formation of the high-order soliton structure by the product of their recombination
21
Citations
16
References
2018
Year
PhotonicsEngineeringPhysicsNonlinear Wave PropagationTopological SolitonFiber-optic CommunicationApplied PhysicsOptical SolitonHigh-order Soliton StructureGroup-velocity-locked-vector-dissipative SolitonsFiber LasersIntegrable SystemProjection SystemHigh-power LasersFiber LaserFibre AmplifierPolarization ManipulationFiber Optic
By using a polarization manipulation and projection system, we numerically decomposed the group-velocity-locked-vector-dissipative solitons (GVLVDSs) from a normal dispersion fiber laser and studied the combination of the projections of the phase-modulated components of the GVLVDS through a polarization beam splitter. Pulses with a structure similar to a high-order vector soliton could be obtained, which could be considered as a pseudo-high-order GVLVDS. It is found that, although GVLVDSs are intrinsically different from group-velocity-locked-vector solitons generated in fiber lasers operated in the anomalous dispersion regime, similar characteristics for the generation of pseudo-high-order GVLVDS are obtained. However, pulse chirp plays a significant role on the generation of pseudo-high-order GVLVDS.
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