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Constrained polarization evolution simplifies depth-resolved retardation measurements with polarization-sensitive optical coherence tomography

机译:受约束的偏振演化通过偏振敏感的光学相干断层扫描技术简化了深度分辨的延迟测量

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We observed that the polarization state of light after round-trip propagation through a birefringent medium frequently aligns with the employed input polarization state ‘mirrored’ by the horizontal plane of the Poincaré sphere. We explored the predisposition for this mirror state and evidence that it constrains the evolution of polarization states as a function of the round-trip depth into weakly scattering birefringent samples, as measured with polarization-sensitive optical coherence tomography (PS-OCT). Combined with spectral variations in the polarization state transmitted through system components, we demonstrate how this constraint enables measurement of depth-resolved birefringence using only a single input polarization state, which offers a critical simplification compared to conventional PS-OCT employing two input states.
机译:我们观察到,通过双折射介质往返传播后,光的偏振态经常与庞加莱球的水平面“镜像”的输入偏振态对齐。我们探索了这种镜面状态的诱因,并证明了它会根据偏振敏感光学相干断层扫描(PS-OCT)的测量,将偏振状态的演变作为往返深度的函数来约束成弱散射双折射样本。结合通过系统组件传输的偏振态的光谱变化,我们证明了此约束条件如何仅使用单个输入偏振态就能够进行深度分辨双折射的测量,与采用两个输入态的常规PS-OCT相比,它提供了关键的简化方法。

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