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Transverse light guides in microstructured optical fibers

机译:微结构光纤中的横向光导

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摘要

A novel class of microstructured optical fiber coupler is introduced that operates by resonant, rather than proximity, energy transfer by means of transverse light guides built into a fiber cross section. Such a design permits significant spatial separation between interacting fibers, which, in turn, eliminates intercore cross talk owing to proximity coupling. A controllable energy transfer between the cores is then achieved by localized and highly directional transmission through a transverse light guide. The main advantage of this coupling scheme is its inherent scalability, as one can integrate additional fiber cores into the existing fiber cross section simply by placing the cores far enough from the existing optical circuitry to prevent proximity cross talk and then making the necessary intercore connections with transverse light wires, in direct analogy with on-chip electronics integration.
机译:引入了一类新型的微结构化光纤耦合器,该耦合器通过内置在光纤横截面中的横向光导通过共振而非邻近能量传输进行操作。这样的设计允许相互作用的纤维之间显着的空间分离,这又消除了由于邻近耦合而引起的芯间串扰。然后,可通过横向光导进行局部且高度定向的传输,从而实现纤芯之间可控的能量传输。这种耦合方案的主要优点是其固有的可扩展性,因为只需将纤芯放置在距现有光学电路足够远的位置,以防止邻近串扰,然后进行必要的纤芯间连接,即可将其他纤芯集成到现有的光纤横截面中。横向灯丝,直接类似于片上电子设备集成。

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