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Microscopic scan-free surface profiling over extended axial ranges by point-spread-function engineering.


ABSTRACT: The shape of a surface, i.e., its topography, influences many functional properties of a material; hence, characterization is critical in a wide variety of applications. Two notable challenges are profiling temporally changing structures, which requires high-speed acquisition, and capturing geometries with large axial steps. Here, we leverage point-spread-function engineering for scan-free, dynamic, microsurface profiling. The presented method is robust to axial steps and acquires full fields of view at camera-limited framerates. We present two approaches for implementation: fluorescence-based and label-free surface profiling, demonstrating the applicability to a variety of sample geometries and surface types.

SUBMITTER: Gordon-Soffer R 

PROVIDER: S-EPMC7608779 | biostudies-literature | 2020 Oct

REPOSITORIES: biostudies-literature

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Microscopic scan-free surface profiling over extended axial ranges by point-spread-function engineering.

Gordon-Soffer Racheli R   Weiss Lucien E LE   Eshel Ran R   Ferdman Boris B   Nehme Elias E   Bercovici Moran M   Shechtman Yoav Y  

Science advances 20201028 44


The shape of a surface, i.e., its topography, influences many functional properties of a material; hence, characterization is critical in a wide variety of applications. Two notable challenges are profiling temporally changing structures, which requires high-speed acquisition, and capturing geometries with large axial steps. Here, we leverage point-spread-function engineering for scan-free, dynamic, microsurface profiling. The presented method is robust to axial steps and acquires full fields of  ...[more]

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