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Exact analytic solutions to the nonlinear wave equation for a saturable Kerr-like medium: modes of nonlinear optical waveguides and couplers

机译:类可饱和介质的非线性波动方程的精确解析解:非线性光波导和耦合器的模式

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Exact analytic solutions to the nonlinear wave equation for a lossless saturable Kerr-like medium are found. The nonlinearity is an intensity-dependent refractive index which saturates according to the model n/sup 2/=n/sub 0//sup 2//spl plusmn/a|E|/sup 2//(1+b|E|/sup 2/). The solutions to the wave equation are used to determine the TE power-dependent dispersion relations, and therefore the guided modes, of a single waveguide structure and of a directional coupler whose coupling medium is the nonlinear saturable material. Although the interaction between the sinh- and cosh-like modes of the coupler, and therefore the coupling length, is not treated in this work, it is shown that the critical power, defined in the literature to be the level of input power above which 100% of the power cannot be switched between the guides of a coupler, is a mathematical misinterpretation in both saturable media as well as in nonsaturable Kerr media. The absence of a critical power in single waveguide structures is also demonstrated. Parameters of GaAs-based waveguides and of a GaAs-GaAlAs MQW coupling medium are used in the numerical analysis.
机译:找到了无损可饱和类克尔介质的非线性波动方程的精确解析解。非线性是与强度有关的折射率,根据模型n / sup 2 / = n / sub 0 // sup 2 // spl plusmn / a | E | / sup 2 //((1 + b | E | / sup 2 /)。波动方程的解用于确定与TE功率有关的色散关系,从而确定单波导结构和定向耦合器(其耦合介质为非线性可饱和材料)的导模。尽管在这项工作中未考虑耦合器的正弦波模式和共弦波模式之间的相互作用以及由此导致的耦合长度,但事实表明,在文献中定义为输入功率水平的临界功率高于该极限功率。不能在耦合器的导轨之间切换100%的功率,这在饱和介质和非饱和Kerr介质中都是一种数学误解。还证明了在单波导结构中不存在临界功率。数值分析中使用了基于GaAs的波导和GaAs-GaAlAs MQW耦合介质的参数。

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