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Orthogonality breaking through few-mode optical fiber

机译:正交性突破少模光纤

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摘要

Polarization sensing and imaging through optical fibers is a technological challenge motivated by promising applications for in vivo, in situ polarimetric endoscopy for biomedical diagnosis. Among the recent approaches proposed to solve this issue, the depolarization/dichroism sensing by polarization orthogonality breaking (DSOB) technique was shown to perform remotely through single-mode optical fibers for depolarization/diattenuation measurements. In this article, we investigate the applicability of such a technique in slightly multimode waveguides. Through theoretical modeling and numerical simulations, we evidence the conditions required for the polarization orthogonality to be preserved after propagation in a few-mode fiber, notably in terms of detection geometry of the spatial modes. Original experiments realized in few-mode fibers both in transmission and reflection configurations are also reported and validate the theoretical predictions. These results allow us to analyze the influence of the experimental parameters, such as detection geometry, sample tilt, or fiber length, on orthogonality preservation and on the measurement dynamics of the DSOB technique in slightly multimode waveguides. (C) 2016 Optical Society of America
机译:通过光纤进行偏振感测和成像是一项有挑战性的技术挑战,其被用于生物医学诊断的体内原位偏振内窥镜的有希望的应用所激发。在解决该问题的最新方法中,通过偏振正交断裂(DSOB)技术进行的去偏振/二向色性检测显示可通过单模光纤远程执行去偏振/二衰减测量。在本文中,我们研究了这种技术在稍微多模波导中的适用性。通过理论建模和数值模拟,我们证明了在少数模光纤中传播后要保持偏振正交性的条件,特别是在空间模的检测几何方面。还报道了在少模光纤中实现透射和反射配置的原始实验,并验证了理论预测。这些结果使我们能够分析实验参数的影响,例如检测几何形状,样品倾斜度或纤维长度,对正交性的保留以及DSOB技术在稍微多模波导中的测量动力学的影响。 (C)2016美国眼镜学会

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