Publication | Open Access
Spectrally smooth supercontinuum from 350 nm to 3 μm in sub-centimeter lengths of soft-glass photonic crystal fibers
93
Citations
21
References
2006
Year
Soliton PropagationOptical MaterialsEngineeringNonlinear OpticsSmooth SupercontinuumFiber OpticsFiber-optic CommunicationOptical PropertiesOptical SolitonFiber LengthNanophotonicsFiber LaserPhotonicsPhysicsNon-linear OpticPhotonic MaterialsLonger Fiber LengthsFiber OpticMultimaterial FiberSupercontinuum GenerationPhotonic StructuresOptical WaveguidesApplied PhysicsSub-centimeter LengthsGlass Photonics
The conversion of light fields in photonic crystal fibers (PCFs) capitalizes on the dramatic enhancement of several optical nonlinearities. We present here spectrally smooth, highly broadband supercontinuum radiation in a short piece of high-nonlinearity soft-glass PCF. This supercontinuum spans several optical octaves, with a spectral range extending from 350 nm to beyond 3000 nm. The selection of an appropriate propagation-length determines the spectral quality of the supercontinuum generated. Experimentally, we clearly identify two regimes of nonlinear pulse transformation: when the fiber length is much shorter than the dispersion length, soliton propagation is not important and a symmetric supercontinuum spectrum arises from almost pure self-phase modulation. For longer fiber lengths the supercontinuum is formed by the breakup of multiple Raman-shifting solitons. In both regions very broad supercontinuum radiation is produced.
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