Publication | Open Access
Mid-infrared hollow core fiber drawn from a 3D printed chalcogenide glass preform
66
Citations
34
References
2020
Year
Soft Glass 3DOptical MaterialsEngineeringOptical GlassLaser ApplicationsMetamaterialsFiber OpticsChalcogenide Glass PreformMid-infrared Hollow CoreHigh-performance FiberOptical PropertiesFunctional GlassOptical SystemsMaterials SciencePhotonicsPhotonic MaterialsFiber OpticChalcogenide GlassTe 20Glass FiberApplied PhysicsOptical WaveguidesGlass PhotonicsOptical Fiber Communication
We report the fabrication of a microstructured optical fiber drawn from a soft glass 3D printed preform. For this proof of concept, a chalcogenide glass that is well known for its capability to be shaped at low temperature and its mid-infrared transmission was selected: Te 20 As 30 Se 50 . The obtained negative curvature hollow core fiber shows several transmission bands in the 2–12 µm range that are reproduced numerically using finite element-based simulations and coupled mode theory.
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