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Superresolved imaging in digital holography by superposition of tilted wavefronts

机译:倾斜波阵面叠加在数字全息中的超分辨成像

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摘要

A technique based on superresolution by digital holographic microscopic imaging is presented. We used a two dimensional (2-D) vertical-cavity self-emitting laser (VCSEL) array as spherical-wave illumination sources. The method is defined in terms of an incoherent superposition of tilted wavefronts. The tilted spherical wave originating from the 2-D VCSEL elements illuminates the target in transmission mode to obtain a hologram in a Mach-Zehnder interferometer configuration. Superresolved images of the input object above the common lens diffraction limit are generated by sequential recording of the individual holograms and numerical reconstruction of the image with the extended spatial frequency range. We have experimentally tested the approach for a microscope objective with an exact 2-D reconstruction image of the input object. The proposed approach has implementation advantages for applications in biological imaging or the microelectronic industry in which structured targets are being inspected.
机译:提出了一种基于数字全息显微成像的超分辨率技术。我们使用二维(2-D)垂直腔自发光激光器(VCSEL)阵列作为球面波照明源。根据倾斜的波前的非相干叠加来定义该方法。源自二维VCSEL元件的倾斜球面波以透射模式照亮目标,从而获得马赫曾德尔干涉仪配置中的全息图。通过顺序记录各个全息图并使用扩展的空间频率范围对图像进行数值重建,可以生成超出公共透镜衍射极限的输入对象超分辨图像。我们已经对输入物镜的精确二维重建图像进行了显微镜物镜的实验测试。对于在其中检查结构化目标的生物成像或微电子工业中的应用,所提出的方法具有实施优势。

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