The phase of modes in three-core optical fibers under high thermal load is studied by means of combined thermal and optical models. In particular, the effects of Thermal dissipation in the doped cores, as a result of quantum defect heat generation, and the relative material refractive index variation are investigated. The induced index gradient can influence the guided mode propagation in multiple adjacent cores, even if their distance is enough to decouple them optically, showing a remarkable dephasing of the different fiber output beams. This effect brought by the thermal phenomenon inherent in the amplification process has to be carefully accounted for when designing multi-core high-power optical lasing and amplifying devices. The mode dephasing results also provide useful information for future evaluation of thermo-optic coupling effects that may occur along the fiber under high power regime.

Mode phase variation and sensitivity to thermal load in three-core optical fibers / Rosa, L., Pallangal, S.H., Poli, F., Selleri, S., Cucinotta, A.. - In: JOURNAL OF LIGHTWAVE TECHNOLOGY. - ISSN 0733-8724. - 38:8(2020), pp. 2400-2405. [10.1109/JLT.2020.2964636]

Mode phase variation and sensitivity to thermal load in three-core optical fibers

Rosa, Lorenzo;
2020

Abstract

The phase of modes in three-core optical fibers under high thermal load is studied by means of combined thermal and optical models. In particular, the effects of Thermal dissipation in the doped cores, as a result of quantum defect heat generation, and the relative material refractive index variation are investigated. The induced index gradient can influence the guided mode propagation in multiple adjacent cores, even if their distance is enough to decouple them optically, showing a remarkable dephasing of the different fiber output beams. This effect brought by the thermal phenomenon inherent in the amplification process has to be carefully accounted for when designing multi-core high-power optical lasing and amplifying devices. The mode dephasing results also provide useful information for future evaluation of thermo-optic coupling effects that may occur along the fiber under high power regime.
2020
7-gen-2020
Inglese
38
8
2400
2405
https://ieeexplore.ieee.org/abstract/document/8951021
Doped fiber amplifiers, high power fiber amplifiers, multicore fibers, optical fibers, optical design techniques, phase variation, thermal analysis
none
info:eu-repo/semantics/article
Contributo su RIVISTA::Articolo su rivista
262
Mode phase variation and sensitivity to thermal load in three-core optical fibers / Rosa, L., Pallangal, S.H., Poli, F., Selleri, S., Cucinotta, A.. - In: JOURNAL OF LIGHTWAVE TECHNOLOGY. - ISSN 0733-8724. - 38:8(2020), pp. 2400-2405. [10.1109/JLT.2020.2964636]
Rosa, Lorenzo; Pallangal, Shahul Hameed; Poli, Federica; Selleri, Stefano; Cucinotta, Annamaria
5
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11380/1198306
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