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Linear and Triangle Order of NX3 Optical Directional Couplers:Variation Coupling Coefficient

机译:NX3光学定向耦合器的线性和三角形顺序:变化耦合系数

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Fabrication of single-mode fiber coupler has widely expands. However, directional fiber coupler geometry always affects the power propagation either two or three ports. This paper describes power launching by NX3 single mode fiber, examined using a matrix transfer for linear and triangle order, calculated from the eigenvalue and the eigenvector. This eigenvalue is referred to the coupling coefficient, where it can be expressed as an effective power transmitted to another fiber. The ratio of coupling coefficient between adjacent axial fibers varies, which can be achieved by adjusting separation of fiber and refractive index of core and cladding. A calculation has been shown in 3D that both power transmission and phase are affected by not only the geometry order, but also the variation of coupling coefficient, assuming the propagation constants, cross section, and separation of coupling length fiber axis are held constant. This calculation can be applied for any sources of wavelength and junction.
机译:单模光纤耦合器的制造广泛膨胀。但是,定向光纤耦合器几何形状总是影响两个或三个端口的功率传播。本文介绍了NX3单模光纤发射的电源,使用矩阵传输进行线性和三角形顺序检查,从特征值和特征向量计算。该特征值被称为耦合系数,在那里可以表示为传输到另一根光纤的有效功率。相邻轴向纤维之间的耦合系数的比率变化,这可以通过调节纤维和芯和包层的折射率分离来实现。在3D中示出了计算,电力传输和相位不仅受几何阶数而影响,也是耦合系数的变化,假设传播常数,横截面和耦合长度光纤轴的分离保持恒定。该计算可以应用于任何波长和结的源。

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