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使用逐行光谱整形光学频率梳的多级联合成波长数字全息术。

Multicascade-linked synthetic-wavelength digital holography using a line-by-line spectral-shaped optical frequency comb.

作者信息

Hase Eiji, Tokizane Yu, Yamagiwa Masatomo, Minamikawa Takeo, Yamamoto Hirotsugu, Morohashi Isao, Yasui Takeshi

出版信息

Opt Express. 2021 May 10;29(10):15772-15785. doi: 10.1364/OE.424458.

Abstract

Phase imaging without a phase wrapping ambiguity is required for wide-axial-range 3D imaging in the fields of surface topography measurement and biomedical imaging. Although multicascade-linked synthetic-wavelength digital holography (MCL-SW-DH) using an optical frequency synthesizer (OFS) is a promising method to meet this requirement, the slow switching of multiple optical wavelengths in the OFS prevents rapid imaging. In the work described in this article, a line-by-line spectral-shaped electro-optics-modulator-based optical frequency comb (EOM-OFC) is used as a light source in MCL-SW-DH to achieve rapid image acquisition. While MCL-SW-DH enables surface topography measurement with millimeter-order axial range and micrometer-order axial resolution, the line-by-line spectral-shaped EOM-OFC extracts a single narrow-linewidth OFC mode from the 10 GHz-spacing EOM-OFC at a center wavelength of 1545 nm within a spectral range of 30 nm at an interval of 500 ms. The effectiveness of the proposed MCL-SW-DH was highlighted by performing surface topography measurement with four step differences of sub-millimeter to millimeter size with an axial uncertainty of 2.08 µm in the image acquisition time of several seconds. The proposed MCL-SW-DH will be a powerful tool for 3D imaging with a wide axial range and high axial resolution.

摘要

在表面形貌测量和生物医学成像领域,进行宽轴向范围的三维成像需要无相位包裹模糊的相位成像。尽管使用光学频率合成器(OFS)的多级联链接合成波长数字全息术(MCL-SW-DH)是满足这一要求的一种很有前景的方法,但OFS中多个光波长的缓慢切换阻碍了快速成像。在本文所述的工作中,基于逐行光谱整形电光调制器的光学频率梳(EOM-OFC)被用作MCL-SW-DH中的光源,以实现快速图像采集。虽然MCL-SW-DH能够实现毫米级轴向范围和微米级轴向分辨率的表面形貌测量,但逐行光谱整形EOM-OFC在30nm的光谱范围内,以500ms的间隔从中心波长为1545nm、间隔为10GHz的EOM-OFC中提取单个窄线宽OFC模式。通过在几秒的图像采集时间内对亚毫米到毫米尺寸的四个台阶差进行表面形貌测量,突出了所提出的MCL-SW-DH的有效性,其轴向不确定度为2.08µm。所提出的MCL-SW-DH将成为具有宽轴向范围和高轴向分辨率的三维成像的有力工具。

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