Publication | Closed Access
Design of dispersion-compensating fibers based on a dual-concentric-core photonic crystal fiber
172
Citations
4
References
2004
Year
Photonic Crystal FiberPhotonicsEngineeringHigh-performance FiberOptical Transmission SystemMultimaterial FiberOptical PropertiesPure SilicaFiber StructureFiber-optic CommunicationFiber Optic SensingDispersion-compensating FibersChromatic Dispersion CompensationFiber OpticPhotonic DevicePhotonic CrystalsNanophotonics
A photonic crystal fiber based on a particular periodic arrangement of airholes and pure silica is designed for chromatic dispersion compensation. A two-concentric-core structure is obtained by introducing two different sizes of capillaries (for the airholes) and exhibits very high negative chromatic dispersion [-2200 ps/(nm km) at 1550 nm]. The variation of optogeometric parameters is also investigated to evaluate the tolerance of the fabrication. Finally, the bending influence on the modal characteristics shows that it is possible to tune the phase-matching wavelength over the C band by adjusting the diameter of the fiber.
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