Publication | Open Access
Control of higher-order cladding mode excitation with tailored femtosecond-written long period fiber gratings
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Citations
27
References
2019
Year
Transient GratingPhotonicsEngineeringOptical PropertiesMode ExcitationFiber-optic CommunicationApplied PhysicsCore Cross-sectionDetailed InvestigationFiber OpticOptoelectronicsFiber LaserFibre AmplifierElectro-optics DeviceTailored Lpfgs
We report on the detailed investigation of the core to cladding mode coupling in femtosecond-written long period fiber gratings (LPFG). It is shown that the excitation of higher-order cladding modes with strong selectivity and high precision is possible. The coupling behavior of several gratings, as well as its dependence on the modified core cross-section, is determined theoretically and confirmed experimentally by its spectral response. The presented tool paves the way for a completely new class of tailored LPFGs for different fiber integrated devices.
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