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首页> 外文期刊>Applied optics >Toward the design of a motion-free tunable coupling module for varying spatial beam profiles: foundations of optimal coupling of a Gaussian mode into a fiber collimator with a dynamic two-lens system
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Toward the design of a motion-free tunable coupling module for varying spatial beam profiles: foundations of optimal coupling of a Gaussian mode into a fiber collimator with a dynamic two-lens system

机译:设计用于变化空间光束轮廓的无运动可调谐耦合模块:高斯模式与具有动态双透镜系统的光纤准直器的最佳耦合基础

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In this paper, we present analytical expressions for the coupling of the fundamental Gaussian mode into a fiber collimator (FC) using a two-lens system. For this two-lens system, we also derive the limiting condition imposed on the focal lengths of the two individual lenses and their mutual separation for near-to-perfect mode coupling into the FC. Variations in the spatial mode profile of a Gaussian beam may occur due to various reasons. These include controlled changes in the beam profile inside mode-division multiplexed systems, and undesired spatial profile variations in beams that pass through turbulent media. The necessity of a dynamic mode-coupling module is dictated by the need to optimally couple Gaussian beams with dynamically changing spatial profiles. Using the analytical expressions derived for mode-coupling efficiency and the resulting lens separation condition that is imposed on a two-lens coupling system, we propose the design of a dynamic two-lens mode-coupling system with a pair of electronically controlled tunable lenses. The proposed dynamic coupling module is motion free and involves the movement of bulk components in order to achieve optimal coupling. The experimental results are also presented to verify the theoretical claims and the working principle of a two-lens mode-coupling system. The results of the experiments are discussed in detail and an excellent agreement is demonstrated between the proposed theoretical framework and the experimental results. (C) 2015 Optical Society of America
机译:在本文中,我们提供了使用两个透镜系统将基本高斯模耦合到光纤准直器(FC)中的解析表达式。对于此双镜头系统,我们还得出了限制条件,该条件施加于两个单独镜头的焦距以及它们相互分离,以将近乎完美的模式耦合到FC中。由于各种原因,可能会发生高斯光束的空间模式轮廓变化。这些包括模式分割多路复用系统内部光束轮廓的受控变化,以及穿过湍流介质的光束中不希望有的空间轮廓变化。动态模式耦合模块的必要性取决于将高斯光束与动态变化的空间轮廓最佳耦合的需要。使用针对模式耦合效率得出的解析表达式以及施加在两透镜耦合系统上的所得透镜分离条件,我们提出了带有一对电控可调透镜的动态两透镜模式耦合系统的设计。所提出的动态耦合模块是不运动的,并且涉及大量部件的运动,以实现最佳耦合。还提出了实验结果,以验证理论上的要求和两透镜模式耦合系统的工作原理。详细讨论了实验结果,并在理论框架和实验结果之间取得了很好的一致性。 (C)2015年美国眼镜学会

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