Publication | Open Access
Efficient group delay averaging in graded-index plastic optical fiber with microscopic heterogeneous core
24
Citations
12
References
2013
Year
Materials SciencePhotonicsOptical MaterialsEngineeringHigh-performance FiberPhysicsEfficient Group DelayOptical PropertiesMicroscopic Heterogeneous CoreMultimaterial FiberApplied PhysicsIntrinsic ModeFiber StructureGi PofFiber OpticIntrinsic Mode CouplingFiber-optic Communication
Intrinsic mode coupling in a graded-index plastic optical fiber (GI POF) is investigated using the developed coupled power theory for a GI POF with a microscopic heterogeneous core. The results showed that the intrinsic material properties can induce random power transitions between all the guided modes, whereas the structural deformation of microbending results in nearest-neighbor coupling. It was numerically demonstrated that efficient group-delay averaging due to intrinsic mode coupling brings the pronounced bandwidth enhancement in fibers with much shorter length than the case of glass multimode fibers.
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