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Ge-rich SiGe based wideband polarization insensitive photonic platform for mid-infrared free-space communications

机译:基于GE的SiGe基于宽带极化不敏感光子平台,用于中红外自由空间通信

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The recent advances in the development of quantum cascade laser with room temperature operation in the mid infraredpaved the way for the realization of wideband communication systems. Particularly, two mid-infrared atmospheretransparency windows lying between 3-5 μm and between 8-14 μm exhibit great potential for further implementation ofwideband free space communications. Additionally this wide unregulated spectral region shows reduced backgroundnoise and low Mie and Rayleigh scattering. Despite the development of a plethora of photonic components in midinfrared such as sources, detectors, passive structures, less efforts have been dedicated to investigate polarizationmanagement for information transport. In this work, the potential of Ge-rich SiGe waveguides is exploited to build apolarization insensitive platform in the mid-infrared. The gradual index evolution in SiGe alloys and geometricparameter optimization are used to obtain waveguides with birefringence below 2×10-4 and an unprecedented bandwidthin both atmosphere transparency windows i.e. near 3.5 μm and 9 μm. Following waveguide birefringence optimizationan ultra-wideband and polarization insensitive multimode interference coupler was designed. The optimized structureshows a 4.5 μm wide bandwidth in transverse electric and transverse magnetic polarization at 9 μm wavelength. Thedeveloped ultra-wideband polarization insensitive photonic building blocks presented in this work pave the way forfurther implementation of free space communication systems in the mid infrared spectral region.
机译:中红外线室温运行的Quantum Cascade激光器的最新进展为实现宽带通信系统铺平了道路。特别是两个中红外气氛透明窗口位于3-5μm之间,介于8-14μm之间,展示进一步实施的巨大潜力宽带自由空间通信。此外,这种广泛的未调节光谱区域显示了缩小的背景噪音和低米和瑞利散射。尽管在中期发育了血清光子成分红外线,如来源,探测器,被动结构,较少的努力都致力于研究极化管理信息运输。在这项工作中,富含GE的SIGE波导的潜力被利用来构建一个中红外线的极化不敏感平台。 SiGe合金和几何的逐渐指数演变参数优化用于获得双折射低于2×10-4的波导和前所未有的带宽在大气透明窗口中,靠近3.5μm和9μm。在波导双折射优化之后设计了超宽带和极化不敏感的多模接收器。优化的结构在9μm波长下,在横向电气和横向磁极化的4.5μm宽带宽。这开发的超宽带极化不敏感光子构建块铺设了铺平道路进一步实现中红外光谱区域中的自由空间通信系统。

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