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虚拟双缝微分暗场彩色线共焦成像技术。

Virtual double-slit differential dark-field chromatic line confocal imaging technology.

出版信息

Opt Lett. 2023 Feb 15;48(4):904-907. doi: 10.1364/OL.479982.

Abstract

Chromatic line confocal imaging (LCI) can be used in high-speed 3D imaging of surface morphology, roughness, and multi-layered transparent media in industrial production, quality inspection, and other fields. However, even if they are compensated for or corrected accordingly, the resolution of the built measurement system differs from the theoretical design. In particular, to guarantee high-speed measurement characteristics of the LCI system, a mass center algorithm with poor accuracy is usually chosen for peak extraction, and with the improvement of the manufacturing level, the axial resolution of the measurement system also puts forward higher requirements. Therefore, in this Letter, we propose a virtual double-slit differential dark-field chromatic LCI (VDSDD-LCI) technology. Our approach can reconstruct the optical 3D profile with higher axial resolution and signal-to-noise ratio (SNR) by reducing the full width at half maximums (FWHMs) of the axial response curve without changing the components of the completed LCI system. The experiments on a coin and scrive board surface demonstrate the validity of the proposed method.

摘要

彩色线共焦成像(LCI)可用于工业生产、质量检查等领域中表面形貌、粗糙度和多层透明介质的高速 3D 成像。然而,即使对其进行相应的补偿或修正,所构建的测量系统的分辨率也与理论设计不同。特别是为了保证 LCI 系统的高速测量特性,通常选择精度较差的质心算法进行峰值提取,并且随着制造水平的提高,对测量系统的轴向分辨率也提出了更高的要求。因此,在本信中,我们提出了一种虚拟双狭缝差分暗场彩色 LCI(VDSDD-LCI)技术。我们的方法通过减小轴向响应曲线的半峰全宽(FWHM)而不改变已完成的 LCI 系统的组件,从而可以用更高的轴向分辨率和信噪比(SNR)重建光学 3D 轮廓。硬币和 scrive 板表面的实验验证了所提出方法的有效性。

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