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Short coherence length produced by a spatial incoherent source applied for the linnik-type interferometer

机译:适用于linnik型干涉仪的空间非相干源产生的短相干长度

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摘要

An axial resolution created by a spatial incoherent source is investigated theoretically and experimentally for the Linnik-type interferometer. The axial resolution in interference microscopy depends on both the temporal coherence length of the source and the objective numerical aperture (NA). Here the problem is treated in a more general situation by considering the spatial and temporal coherence of the illumination source which may be important for deep coherence imaging application. The results show that the axial resolution is degraded at the depth much less by using the optimal spectral bandwidth of the incoherent source and high-NA objectives. (C) 2008 Optical Society of America.
机译:对于Linnik型干涉仪,在理论上和实验上研究了由空间不相干源产生的轴向分辨率。干涉显微镜中的轴向分辨率取决于光源的时间相干长度和物镜数值孔径(NA)。在此,通过考虑照明源的空间和时间相干性,在更一般的情况下解决该问题,这对于深度相干成像应用可能很重要。结果表明,通过使用非相干光源和高NA物镜的最佳光谱带宽,轴向分辨率在深度处的降低要少得多。 (C)2008年美国眼镜学会。

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