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Numerical evaluation of radiation and optical coupling occurring in optical coupler

Numerical evaluation of radiation and optical coupling occurring in optical coupler
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摘要 We present in this work a new mathematical model to analyze and evaluate optical phenomena occurring in the nonuniform optical waveguide used in integrated optics as an optical coupler. By introducing some modifications to the intrinsic integral, we perfectly assess the radiation field present in the adjacent medium of the waveguide and, thus, follow the evolution of the optical coupling from the taper thin film to the substrate and cladding until there is a total energy transfer. The new model that is introduced can be used to evaluate electromagnetic field distribution in three mediums that constitute any nonuniform optical couplers presenting great or low wedge angles. We present in this work a new mathematical model to analyze and evaluate optical phenomena occurring in the nonuniform optical waveguide used in integrated optics as an optical coupler. By introducing some modifications to the intrinsic integral, we perfectly assess the radiation field present in the adjacent medium of the waveguide and, thus, follow the evolution of the optical coupling from the taper thin film to the substrate and cladding until there is a total energy transfer. The new model that is introduced can be used to evaluate electromagnetic field distribution in three mediums that constitute any nonuniform optical couplers presenting great or low wedge angles.
出处 《Chinese Optics Letters》 SCIE EI CAS CSCD 2017年第2期35-39,共5页 中国光学快报(英文版)
基金 co-supported by the University of Sciences and Technology of Oran Mohamed Boudiaf (USTOMB) and the Centre of Satellites Development (CDS), Oran, Algeria
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