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Variational analysis of eigenmodes of integrated optical waveguides and applications

Variational analysis of eigenmodes of integrated optical waveguides and applications
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摘要 An iterative procedure is proposed for the variational analysis of Ti:LiNbO3 optical waveguides. A trial solution for the dominant electric field profile of arbitrary-order eigenmodes in strip waveguides and two coupled waveguides is proposed and its parameters are determined using the variational method. The results calculated using this method agree well with those obtained using the finite-element method. The present method has been used to check the accuracy of the effective index method as well as a quasi-analytical technique based on the effective index method. The results show that the effective index method is generally accurate for the fundamental mode and becomes less accurate for higher-order vertical modes. An iterative procedure is proposed for the variational analysis of Ti:LiNbO3 optical waveguides. A trial solution for the dominant electric field profile of arbitrary-order eigenmodes in strip waveguides and two coupled waveguides is proposed and its parameters are determined using the variational method. The results calculated using this method agree well with those obtained using the finite-element method. The present method has been used to check the accuracy of the effective index method as well as a quasi-analytical technique based on the effective index method. The results show that the effective index method is generally accurate for the fundamental mode and becomes less accurate for higher-order vertical modes.
作者 祝宁华
机构地区 Electronics Department
出处 《Science China Mathematics》 SCIE 1995年第5期608-617,共10页 中国科学:数学(英文版)
基金 Project supported in part by the National Natural Science Foundation of China,Science Foundation of Guangdong Province,Zhongshan University,Chinese Post-doctoral Committee.
关键词 optical WAVEGUIDES integrated OPTICS optimal design titanium indiffused LITHIUM NIOBATE (Ti: LiNbO3). optical waveguides, integrated optics, optimal design, titanium indiffused lithium niobate (Ti: LiNbO3).
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