光电工程
光電工程
광전공정
OPTO-ELECTRONIC ENGINEERING
2010年
4期
102-107
,共6页
集成光学%宽波导光栅%扩束光纤%高斯光束
集成光學%寬波導光柵%擴束光纖%高斯光束
집성광학%관파도광책%확속광섬%고사광속
integrated optics%wide waveguide grating%expand core fiber%Gaussian beam
为了研究光纤与宽波导光栅的有效耦合,基于高斯光束与波导光栅的光耦合理论,以30μm宽波导光栅为研究对象,利用矩阵光学和高斯光束理论分析和设计了一种扩束光纤,并通过分析其耦合损耗,建立了扩束光纤与波导光栅耦合模型.优化所设计扩束光纤的结构参数后,得到束腰半径为10.8μm的输出光束.最后分析了扩束光纤的结构容差,并讨论了所设计扩束光纤的输出光束、单模光纤的输出光束以及束腰半径为16 μm的自由空间高斯光束各自在光栅表面的位置变化对光栅耦合效率的影响.可知扩束光纤输出的光束与单模光纤输出的光束相比具有较大的位置容差,与束腰半径为16 μm的自由空间高斯光束相比,光耦合效率基本相同.
為瞭研究光纖與寬波導光柵的有效耦閤,基于高斯光束與波導光柵的光耦閤理論,以30μm寬波導光柵為研究對象,利用矩陣光學和高斯光束理論分析和設計瞭一種擴束光纖,併通過分析其耦閤損耗,建立瞭擴束光纖與波導光柵耦閤模型.優化所設計擴束光纖的結構參數後,得到束腰半徑為10.8μm的輸齣光束.最後分析瞭擴束光纖的結構容差,併討論瞭所設計擴束光纖的輸齣光束、單模光纖的輸齣光束以及束腰半徑為16 μm的自由空間高斯光束各自在光柵錶麵的位置變化對光柵耦閤效率的影響.可知擴束光纖輸齣的光束與單模光纖輸齣的光束相比具有較大的位置容差,與束腰半徑為16 μm的自由空間高斯光束相比,光耦閤效率基本相同.
위료연구광섬여관파도광책적유효우합,기우고사광속여파도광책적광우합이론,이30μm관파도광책위연구대상,이용구진광학화고사광속이론분석화설계료일충확속광섬,병통과분석기우합손모,건립료확속광섬여파도광책우합모형.우화소설계확속광섬적결구삼수후,득도속요반경위10.8μm적수출광속.최후분석료확속광섬적결구용차,병토론료소설계확속광섬적수출광속、단모광섬적수출광속이급속요반경위16 μm적자유공간고사광속각자재광책표면적위치변화대광책우합효솔적영향.가지확속광섬수출적광속여단모광섬수출적광속상비구유교대적위치용차,여속요반경위16 μm적자유공간고사광속상비,광우합효솔기본상동.
In order to study the effective coupling between optical fiber and wide waveguide grating (≥30 microns), an expand core fiber is designed for a given wide waveguide grating of 30 microns based on the theory of coupling Gaussian beam into waveguide grating, by using the method of matrix optics technologies and Gaussian beam theories. After the coupling loss is analyzed, the model of coupling expand core fiber with waveguide grating is built. By optimizing the structure of the fiber, 10.8 microns waist radius of output beam is obtained theoretically. At last the structure tolerance of the expand core fiber is studied. And then the optical coupling efficiency imposed by the position of Ganssian beam on the grating is discussed by comparing the Gaussian beam output from expand core fiber, single mode fiber and free space Gaussian beam with waist radius of 16 microns. The results are that the position tolerance of the expand core fiber is more than that of single mode fiber and almost the same as that of Gaussian beam with waist radius of 16 microns.