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Switching elements based on the spatial optical soliton propagation

机译:基于空间孤子传播的开关元件

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Abstract: the soliton generation and trapping in nonlinear waveguide can be used to implement ultrafast, all-optical switches. In this paper, the phenomenon of the soliton emission from a nonlinear interface of a symmetrical waveguide and of the soliton trapping are analyzed by simulations performed using the beam propagation method. We show the correlation between the input optical power and the length at which the soliton generation occurs, along the propagation direction of the single-mode nonlinear waveguide. Based on these principles, new all-optical switching elements and logical gates can be designed, which exhibit many important advantages on the classical electro-optical devices. !11
机译:摘要:非线性波导中孤子的​​产生和俘获可用于实现超快的全光开关。在本文中,通过使用束传播方法进行的仿真分析了对称波导的非线性界面处的孤子发射现象和孤子俘获现象。我们显示了沿单模非线性波导的传播方向,输入光功率与发生孤子的长度之间的相关性。基于这些原理,可以设计新的全光开关元件和逻辑门,它们在传统的电光设备上显示出许多重要的优点。 !11

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