首页> 外文会议>International Conference on Photorefractive Effects, Materials, and Devices; 20050719-23; Sanya(CN) >Linear and Nonlinear Light Propagation in Lithium Niobate Waveguide Arrays
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Linear and Nonlinear Light Propagation in Lithium Niobate Waveguide Arrays

机译:铌酸锂波导阵列中的线性和非线性光传播

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We investigate both linear and nonlinear behaviour of light in one-dimensional waveguide arrays, which are fabricated by titanium in-diffusion in lithium niobate crystals. Copper ions are in-diffused to increase the photorefractive effect of the waveguide. When the input power of a narrow light beam excites only one channel (width about 4 μm), discrete diffraction (both normal and anomalous) is observed because of evanescent coupling of the adjacent waveguides. When the input light power is increased, the nonlinear index changes induced by the photovoltaic effect suppress linear coupling, resulting in the formation of discrete soliton or gap solitons. We observe bright staggered gap solitons that are formed due to the balance between anomalous diffraction and the self-defocusing nonlinearity of our sample. For a theoretical description the bandgap structures of the waveguide array are calculated using Floquet-Bloch analysis.
机译:我们研究了一维波导阵列中光的线性和非线性行为,该阵列由钛在铌酸锂晶体中的扩散制成。铜离子被扩散,以增加波导的光折射效果。当窄光束的输入功率仅激发一个通道(宽度约4μm)时,由于相邻波导的e逝耦合,将观察到离散衍射(正常衍射和异常衍射)。当输入光功率增加时,光伏效应引起的非线性指数变化会抑制线性耦合,从而导致形成离散孤子或带隙孤子。我们观察到由于异常衍射和样品的自散焦非线性之间的平衡而形成的明亮的交错间隙孤子。为了进行理论描述,使用Floquet-Bloch分析来计算波导阵列的带隙结构。

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