用于瞬态微观轮廓检测的 Mirau 偏振干涉显微镜
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TH741

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浙江省自然科学基金(LY21E050016, LY17E050014)、国家自然科学基金(51775528)项目资助


Polarization Mirau interference microscope for transient microscopic testing
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    摘要:

    基于 PZT 移相的传统 Mirau 干涉显微镜存在采样时间间隔长、易受外界环境扰动影响以及对比度不可调等问题,提出 了用于瞬态微观轮廓检测的 Mirau 偏振干涉显微镜。 系统利用线栅偏振片作为偏振分束器,实现偏振分光和条纹对比度的可 调,以满足不同反射率被测对象的检测需求;利用偏振相机瞬时获取四幅偏振相移干涉图,可有效降低外界环境扰动影响。 对 系统采用的偏振元件进行了建模分析,得到实际的偏振像差分布,并将其作为系统误差予以剔除。 同时针对偏振相机存在的视 场误差,研究了基于相位插值的视场误差校正方法。 通过分析系统中各个器件特性对测量结果精度的影响,提出相应的误差校 正方法。 对所提出的 Mirau 偏振干涉显微镜的精度和可行性进行了实验论证,实验结果表明,其测量精度优于 1 / 100λ,重复性 精度优于 0. 1 nm。 该测量系统具有对比度可调、瞬态测量以及结构紧凑等优点,为各类元件表面微观轮廓以及微小结构的在 线检测提供了一种可行方法。

    Abstract:

    The traditional Mirau interference microscope based on the PZT phase shifter has problems of long sampling interval, environmental disturbance sensitivity and non-adjustable fringe contrast. To address these issues, a polarization Mirau interference microscope is proposed for transient microscopic profile testing. To meet the testing requirements for various tested objects with different reflectivity, a linear grid polarizer is employed as a polarized beam splitter in the system. In this way, the polarization splitting and adjustable fringe contrast is achieved. Four polarization phase-shifted interferograms are instantaneously obtained with a polarization camera. In which, the influence of environmental disturbance is effectively reduced. The measurement error introduced by the polarization components is modeled and analyzed, and the actual polarization aberration is obtained to eliminate the corresponding systematic error. To remove the field of view ( FOV) error in the polarization camera, the FOV error calibration method based on phase interpolation is also studied. Based on the analysis of the influence of system components on the measurement accuracy, the corresponding error calibration method is proposed. The accuracy and feasibility of the proposed polarization Mirau interference microscope are demonstrated by experiments. Experimental results show that the measurement accuracy and repeatability are better than 1 / 100λ and 0. 1 nm, respectively. The measurement system has advantages of adjustable fringe contrast, transient measurement and compact in structure, which provides a feasible method for online testing of micro profiles and micro structures of various components.

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吕 鑫,王道档,阮 旸,孔 明,许新科.用于瞬态微观轮廓检测的 Mirau 偏振干涉显微镜[J].仪器仪表学报,2022,43(2):92-99

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  • 在线发布日期: 2023-02-06
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