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Full-field optical coherence tomography by achromatic phase shifter with a rotating half-wave plate

机译:通过具有旋转半波片的消色差相变质造影的全场光学相干性断层扫描

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In optical coherence tomography (OCT), broad-bandwidth optical sources are required to achieve high axial resolution. Introducing a variable phase shift achromatically between the probe and reference beams is required for phase-shifting algorithms implemented to extract the coherence signal. We propose a full-field OCT using an achromatic phase shifter based on wave plates. The phase shifter that is almost independent of the wavelength over a range of 240 nm, can provide a phase shift of eight times the rotating angle of the half-wave plate. The system is based on a Michelson interferometer, illuminated by a white light source, and has several advantages compared with previous implementation of full-field OCT based an achromatic phase shifter. Numerical simulation on phase shift error and amplitude ratio between orthogonal polarization components at nominal phase shifts required for two typical phase-stepping algorithms is conducted. Approach for extracting OCT signal by the revised Carre algorithm is presented.
机译:在光学相干断层扫描(OCT)中,需要宽带宽光源来实现高轴向分辨率。在实现以提取相干信号的相移算法中需要在探针和参考光束之间引入变量相移和参考光束。我们使用基于波板的消色差移液器提出全场OCT。几乎无关在240nm范围内的波长的移相器可以提供半波片的旋转角度的八倍的相移。该系统基于由白光源照射的迈克尔逊干涉仪,与基于全场OCT的基于消色差相移器相比,有几个优点。进行了两个典型相位算法所需的标称相移的相移误差和幅度比的数值模拟。提出了通过修改的Carre算法提取OCT信号的方法。

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