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Efficient multi-mode to single-mode conversion in a 61 port Photonic Lantern

机译:高效的多模式在61端口光子灯中的单模转换

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We demonstrate the fabrication of a multi-mode (MM) to 61 port single-mode (SM) splitter or "Photonic Lantern". Low port count Photonic Lanterns were first described by Leon-Saval et al. (2005). These are based on a photonic crystal fiber type design, with air-holes defining the multi-mode fiber (MMF) cladding. Our fabricated Photonic Lanterns are solid all-glass versions, with the MMF defined by a low-index tube surrounding the single-mode fibers (SMFs). We show experimentally that these devices can be used to achieve efficient and reversible coupling between a MMF and 61 SMFs, when perfectly matched launch conditions into the MMF are ensured. The total coupling loss from a 100μm core diameter MM section to the ensemble of 61 SMFs and back to another 100 μm core MM section is measured to be as low as 0.76 dB. This demonstrates the feasibility of using the Photonic Lanterns within the field of astrophotonics for coupling MM star-light to an ensemble of SM fibers in order to perform fiber Bragg grating based spectral filtering.
机译:我们展示了多模(mm)到61端口单模(SM)分离器或“光子灯笼”的制造。低端口计数光子灯笼首先由莱昂 - 萨维尔等人描述。 (2005)。这些基于光子晶体纤维型设计,气孔限定多模光纤(MMF)包层。我们制造的光子灯笼是固体全玻璃版本,MMF由围绕单模纤维(SMF)的低折射率管定义。我们通过实验显示这些设备可以用于在MMF和6​​1 SMF之间实现高效且可逆的耦合,当确保了完全匹配的发射条件进入MMF时。从100微米芯直径MM部分的合奏的61米的SMF和回另一100μm的芯部MM的总耦合损耗被测量为低至0.76分贝。这证明了在Astrophotonics领域内使用光子灯的可行性,用于将MM星光耦合到SM纤维的集合中,以便进行基于光纤布拉格光栅的光谱滤光。

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