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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >2-D MMI Devices Based on Integrated Hollow ARROW Waveguides
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2-D MMI Devices Based on Integrated Hollow ARROW Waveguides

机译:基于集成空心箭头波导的二维MMI设备

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In this paper, the design, fabrication, and characterization of 2-D multimode interference (MMI) devices based on integrated silicon hollow antiresonant reflection optical waveguides (ARROW) is presented. Unlike conventional waveguides, the field in ARROW is not confined in the core region by total internal reflection but by dielectric cladding layers designed to form-high reflectivity Fabry-Perot mirrors. This peculiar structure permits to realize integrated hollow-core waveguides using standard silicon technology. In this paper, we show that these waveguides can be usefully applied in the fabrication of 2-D MMI devices. With a 130 mumtimes 130 mum cross-section waveguide, multiple images are observed from 1times1 to 6times6 image matrices. These devices also exhibit interesting bandpass spectral properties that can be usefully applied in several fields ranging from telecommunications to sensing
机译:本文介绍了基于集成硅空心反谐振反射光波导(ARROW)的二维多模干涉(MMI)器件的设计,制造和表征。与常规波导不同,ARROW中的磁场不是通过全内反射限制在纤芯区域内,而是通过设计用于形成高反射率Fabry-Perot镜的介电覆层来限制。这种特殊的结构允许使用标准的硅技术实现集成的空心波导。在本文中,我们证明了这些波导可以有效地应用于二维MMI设备的制造中。使用130倍x 130微米的横截面波导,可以在1 x 1到6 x 6的图像矩阵中观察到多个图像。这些设备还展现出有趣的带通频谱特性,可以有效地应用于从电信到传感的多个领域

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