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Optimized butt coupling between single mode fiber and hollow-core photonic crystal fiber

机译:单模光纤和空心光子晶体光纤之间的优化对接耦合

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摘要

In this paper, the optimum gap for maximum light coupling between Single Mode Fiber (SMF) & Hollow Core Photonic Crystal Fiber (HC-PCF) is theoretically computed and experimentally demonstrated. The Gaussian beam profile emanating from transmitting fiber undergoes Fresnel diffraction in the air up to some distance till its diffracted Mode Field Diameter (MFD) matches with the core diameter of receiving fiber. Theoretically computed such distance provides an optimum gap for maximum light coupling between these two fibers. The optimum gap is numerically computed as 7.618 μm and 12.598 μm for SMF to HC-PCF and HC-PCF to SMF light transmission configurations respectively and is verified experimentally. This optimized gap is useful for HC-PCF based devices to be joined to SMF as a transmission medium.
机译:本文从理论上计算和实验证明了单模光纤(SMF)和空心光子晶体光纤(HC-PCF)之间最大光耦合的最佳间隙。从发射光纤发出的高斯光束轮廓在空气中经历菲涅耳衍射直至一定距离,直到其衍射模场直径(MFD)与接收光纤的纤芯直径匹配为止。理论上计算出的这种距离为这两根光纤之间的最大光耦合提供了最佳的间隙。对于SMF到HC-PCF和HC-PCF到SMF的光传输配置,最佳间隙的数值计算分别为7.618μm和12.598μm,并进行了实验验证。这种优化的间隙对于将基于HC-PCF的设备连接到SMF作为传输介质很有用。

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