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首页> 外文期刊>Photonics Technology Letters, IEEE >All-Fiber Broadband Mode Converter for Future Wavelength and Mode Division Multiplexing Systems
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All-Fiber Broadband Mode Converter for Future Wavelength and Mode Division Multiplexing Systems

机译:适用于未来波长和模分复用系统的全光纤宽带模式转换器

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A novel broadband all-fiber ${rm LP}_{02}$ mode converter is proposed and numerically analyzed. The converter is based on multimode interference in a multimode fiber (MMF) that interconnects a single-mode fiber (SMF) with a few-mode fiber, considered the transmission medium in future mode division multiplexing (MDM) systems. The proposed ${rm LP}_{02}$ converter is reciprocal and polarization independent, and supports a very broad optical bandwidth of 150 nm with an over 20 dB extinction ratio, as well as an efficient coupling and easy connectivity as an all-fiber device. In a reciprocal operation, it performs mode filtering as well, therefore supporting mode demultiplexing. The dependence of the performance of the converter on the MMF length and core diameter is further investigated. The very broad bandwidth of the device renders it suitable for future transmission systems that need to combine MDM with wavelength division multiplexing targeting to achieve record transmission rates that cannot be reached with SMF transmission systems.
机译:提出了一种新颖的宽带全光纤$ {rm LP} _ {02} $模式转换器,并进行了数值分析。该转换器基于多模光纤(MMF)中的多模干扰,该多模光纤将单模光纤(SMF)与少数模光纤互连,在未来的模分复用(MDM)系统中将其视为传输介质。拟议的$ {rm LP} _ {02} $转换器是互逆和偏振独立的,并支持150 nm的非常宽的光带宽,消光比超过20 dB,并具有高效的耦合和易于连接的特性,光纤设备。在倒数运算中,它也执行模式过滤,因此支持模式多路分解。进一步研究了转换器性能对MMF长度和铁芯直径的依赖性。该设备非常宽的带宽使其适用于将来的传输系统,这些传输系统需要将MDM与波分复用目标结合起来以实现SMF传输系统无法达到的记录传输速率。

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