Compact low-cost lensless digital holographic microscope for topographic measurements of microstructures in reflection geometry

A. Adinda-Ougba, B. Kabir, N. Koukourakis, F. Mitschker, N. Gerhardt, M. Hofmann
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引用次数: 1

Abstract

Digital holography is capable of providing surface profiles of samples with axial resolution in the nanometer range. Lensless digital holography is a well-established microscopic method providing diffraction limited resolution of the order of the wavelength of the used light source. It is based on inline holography and usually allows imaging only in transmission geometry. In this contribution we propose a compact low cost lensless digital holographic microscope capable of performing measurements on reflective microstructures. The novelty of the system consists on a direct use of a laser diode without any need of coupling optics as light source. This simplifies the setup and provides sufficient magnification to measure microstructures. We evaluate our setup by imaging reflective microstructures. We have achieved ̴ 6 mm2 field of view amplitude images with ̴ 2.5μm lateral resolution and phase images with axial resolution in nanometer range. The phase image provides a full-field profile measurement of the sample in nanometer range.
用于反射几何中微结构的地形测量的小型低成本无透镜数字全息显微镜
数字全息技术能够提供纳米级轴向分辨率的样品表面轮廓。无透镜数字全息术是一种完善的显微方法,提供所使用光源波长顺序的衍射极限分辨率。它基于内嵌全息术,通常只允许在传输几何上成像。在这个贡献中,我们提出了一种紧凑的低成本无透镜数字全息显微镜,能够对反射微观结构进行测量。该系统的新颖之处在于直接使用激光二极管而不需要耦合光学作为光源。这简化了设置,并提供了足够的放大来测量微观结构。我们通过成像反射微结构来评估我们的设置。我们在纳米范围内获得了横向分辨率为2.5μm、横向分辨率为6.5 mm2的视场振幅图像和轴向分辨率为2.5μm的相位图像。相像提供了纳米范围内样品的全场轮廓测量。
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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