Accurate phase estimation of vibrating interfaces using spectral estimation optical coherence tomography

J. de Wit, G. Glentis, J. Kalkman
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Abstract

Phase sensitive Optical Coherence Tomography (OCT) is able to measure small axial motion at the level of ten nanometer. However, when interfaces are located close to each other, the phase of one interface may influence the phase of the other interface. This spectral leakage hampers the ability to see relative motion between structures within the sample, especially when the separation is below the axial resolution. Spectral estimation OCT (SE-OCT) based on IAA can not only improve the axial resolution beyond the conventional bandwidth limitation, but also reduce this spectral leakage. Here we show accurate reconstruction of the vibration of an interface at sub-resolution distance from a high-intensity interface with a different vibration frequency. Phase preserved IAA successfully reduces spectral leakage and outperforms conventional DFT-based reconstruction methods.
基于光谱估计光学相干层析成像的振动界面相位精确估计
相敏光学相干层析成像(OCT)能够测量十纳米量级的小轴向运动。然而,当接口彼此靠近时,一个接口的相位可能会影响另一个接口的相位。这种光谱泄漏阻碍了观察样品内部结构之间相对运动的能力,特别是当分离低于轴向分辨率时。基于IAA的光谱估计OCT (SE-OCT)不仅可以提高超出常规带宽限制的轴向分辨率,还可以减少这种频谱泄漏。在这里,我们展示了与不同振动频率的高强度界面在亚分辨率距离上的精确振动重建。相位保留IAA成功地减少了光谱泄漏,优于传统的基于dft的重建方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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