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Analysis of nonlinear three-layer optical waveguide

机译:非线性三层光波导的分析

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Optical waveguides are characterized by regions of high refractive index bounded by regions of lower index regions and can be categorized as planar, channel, and fiber guides. Monochromatic Laser light is used as the signal carrier through the optical waveguide. If the strength of Laser light is increased, the repeater distance of an optical fiber network can be increased. So to obtain high intensities, it is usually necessary to focus laser beams into the higher index guided region of the optical waveguide where signal processing will take place. However, high laser intensity within a small guided region will cause nonlinear behavior of the waveguide. In this research work the refractive index of the waveguide is assumed to be the function of the square of electric field. Various guided structures are analyzed considering nonlinear refractive index. First the eigenvalue equation is solved to determine the confined guided modes and then the propagation of these modes through different structures are found using Beam Propagation Method (BPM). Since the efficiency of a nonlinear interaction depends at least linearly, and in many cases quadratically, on the interaction distance, clearly there is a trade-off in the efficiency between high intensity and interaction length.
机译:光波导的特征在于高折射率的区域被低折射率区域的区域所界定,可以分为平面波导,通道波导和光纤波导。单色激光被用作通过光波导的信号载体。如果增加激光的强度,则可以增加光纤网络的中继器距离。因此,为了获得高强度,通常需要将激光束聚焦到将进行信号处理的光波导的较高折射率引导区域中。但是,在较小的引导区域内的高激光强度将导致波导的非线性行为。在这项研究工作中,假设波导的折射率是电场平方的函数。考虑到非线性折射率,分析了各种导向结构。首先,求解特征值方程以确定局限的引导模态,然后使用光束传播方法(BPM)找到这些模态在不同结构中的传播。因为非线性相互作用的效率至少线性地取决于相互作用距离,并且在许多情况下是二次方取决于相互作用距离,所以显然在高强度和相互作用长度之间要在效率上进行权衡。

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