We investigate with a numerical model the confinement loss of the higher-order modes of hollow-core inhibited coupling tube lattice fibers as influenced by the power spectral distribution of transverse surface roughness in the glass tubes forming the fiber cladding.

Modal Content and Confinement Loss Evolution with Surface Roughness Profile in Hollow-Core Inhibited Coupling Tube Lattice Fibers / Vasko, K.; Melli, F.; Rosa, L.; Vincetti, L.; Benabid, F.. - (2022). (Intervento presentato al convegno CLEO: Science and Innovations, S and I 2022 tenutosi a usa nel 2022).

Modal Content and Confinement Loss Evolution with Surface Roughness Profile in Hollow-Core Inhibited Coupling Tube Lattice Fibers

Rosa L.;Vincetti L.;
2022

Abstract

We investigate with a numerical model the confinement loss of the higher-order modes of hollow-core inhibited coupling tube lattice fibers as influenced by the power spectral distribution of transverse surface roughness in the glass tubes forming the fiber cladding.
2022
CLEO: Science and Innovations, S and I 2022
usa
2022
Vasko, K.; Melli, F.; Rosa, L.; Vincetti, L.; Benabid, F.
Modal Content and Confinement Loss Evolution with Surface Roughness Profile in Hollow-Core Inhibited Coupling Tube Lattice Fibers / Vasko, K.; Melli, F.; Rosa, L.; Vincetti, L.; Benabid, F.. - (2022). (Intervento presentato al convegno CLEO: Science and Innovations, S and I 2022 tenutosi a usa nel 2022).
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11380/1286762
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