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首页> 外文期刊>Journal of Lightwave Technology >Phase compensation of bent silica-glass optical channel waveguide devices by vector-wave mode-matching method
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Phase compensation of bent silica-glass optical channel waveguide devices by vector-wave mode-matching method

机译:矢量波模式匹配法补偿石英玻璃弯曲光波导器件的相位补偿

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摘要

Reduction of the radiation loss is essential for the design of integrated-optic devices involving bent waveguides. For wavelength-selective waveguide devices requiring accurate phase control, the effect of bending-induced phase-constant change becomes even more important. The vector-wave mode-matching method is extended for the analysis of both loss and phase characteristics for general integrated-optic bent channel waveguides. For a typical Mach-Zehnder interferometric filter in silica-glass waveguide, the calculated phase-constant change is used in the waveguide path-length compensation which results in excellent agreement between design and measurement.
机译:减少辐射损耗对于包含弯曲波导的集成光学器件的设计至关重要。对于需要精确的相位控制的波长选择波导器件,弯曲引起的相位常数变化的影响变得更加重要。扩展了矢量波模式匹配方法,以分析一般集成光学弯曲通道波导的损耗和相位特性。对于石英玻璃波导中的典型Mach-Zehnder干涉式滤波器,将计算出的相位常数变化用于波导路径长度补偿中,从而在设计和测量之间实现了极好的一致性。

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