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Active wavefront shaping for controlling and improving multimode fiber sensor

机译:有源波阵面整形,用于控制和改进多模光纤传感器

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Wavefront shaping (WFS) techniques have been used as a powerful tool to control light propagation in complex media, including multimode fibers. In this paper, we propose a new application of WFS for multimode fiber-based sensors. The use of a single multimode fiber alone, without any special fabrication, as a sensor based on the light intensity variations is not an easy task. The twist effect on multimode fiber is used as an example herein. Experimental results show that light intensity through the multimode fiber shows no direct relationship with the twist angle, but the correlation coefficient (CC) of speckle patterns does. Moreover, if WFS is applied to transform the spatially seemingly random light pattern at the exit of the multimode fiber into an optical focus. The focal pattern correlation and intensity both can serve to gauge the twist angle, with doubled measurement range and allowance of using a fast point detector to provide the feedback. With further development, WFS may find potentials to facilitate the development of multimode fiber-based sensors in a variety of scenarios.
机译:波前成形(WFS)技术已被用作控制光在复杂介质(包括多模光纤)中传播的强大工具。在本文中,我们提出了WFS在多模光纤传感器中的新应用。在没有任何特殊制造的情况下,仅使用单个多模光纤作为基于光强度变化的传感器并不是一件容易的事。本文以多模光纤上的扭曲效应为例。实验结果表明,通过多模光纤的光强度与扭曲角没有直接关系,但散斑图案的相关系数(CC)确实存在。此外,如果应用WFS将多模光纤出口处的空间看似随机的光图案转换为光学焦点。焦点图案的相关性和强度都可以用来测量扭转角,从而使测量范围加倍,并允许使用快速点检测器提供反馈。随着进一步的发展,WFS在各种情况下都可能发现促进多模光纤传感器发展的潜力。

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