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Fiber-based polarization-sensitive Mueller matrix optical coherence tomography with continuous source polarization modulation

机译:连续源偏振调制的基于光纤的偏振敏感穆勒矩阵光学相干层析成像

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摘要

We report on a new configuration of fiber-based polarization-sensitive Mueller matrix optical coherence tomography that permits the acquisition of the round-trip Jones matrix of a biological sample using only one light source and a single depth scan. In this new configuration, a polarization modulator is used in the source arm to continuously modulate the incident polarization state for both the reference and the sample arms. The Jones matrix of the sample can be calculated from the two frequency terms in the two detection channels. The first term is modulated by the carrier frequency, which is determined by the longitudinal scanning mechanism, whereas the other term is modulated by the beat frequency between the carrier frequency and the second harmonic of the modulation frequency of the polarization modulator. One important feature of this system is that, for the first time to our knowledge, the Jones matrix of the sample can be calculated with a single detection channel and a single measurement when diattenuation is negligible. The system was successfully tested by imaging both standard polarization elements and biological samples.
机译:我们报告了一种基于光纤的偏振敏感穆勒矩阵光学相干断层扫描的新配置,该配置允许仅使用一个光源和一次深度扫描就可以获取生物样本的往返琼斯矩阵。在这种新配置中,在源臂中使用了偏振调制器,以连续调制参考臂和采样臂的入射偏振态。可以从两个检测通道中的两个频率项来计算样本的琼斯矩阵。第一项由载波频率调制,载波频率由纵向扫描机制确定,而另一项由载波频率与偏振调制器的调制频率的二次谐波之间的差拍频率调制。该系统的一个重要特征是,就我们所知,这是第一次,当双衰减可忽略不计时,可以使用单个检测通道和单个测量值来计算样品的琼斯矩阵。通过对标准偏振元件和生物样品进行成像,成功测试了该系统。

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