Return
Single-shot multiple-depth macroscopic imaging by spatial frequency multiplexing
DOI:10.1364/OE.439166.png)
Abstract
En 中文
We present a low-coherence interferometric imaging system designed for 3-dimensional (3-D) imaging of a macroscopic object through a narrow passage. Our system is equipped with a probe-type port composed of a bundle fiber for imaging and a separate multimode optical fiber for illumination. To eliminate the need for mechanical depth scanning, we employ a spatial frequency multiplexing method by installing a 2-D diffraction grating and an echelon in the reference arm. This configuration generates multiple reference beams, all having different path lengths and propagation directions, which facilitates the encoding of different depth information in a single interferogram. We demonstrate the acquisition of 9 depth images at the interval of 250 tun for a custom-made cone and a plaster teeth model. The proposed system minimizes the need for mechanical scanning and achieves a wide range of depth coverage, significantly increasing the speed of 3-D imaging for macroscopic objects. (C) 2021 Optical Society of America under the terms of the OSA Open Access Publishing Agreement
Keywords:
FOURIER-TRANSFORM PROFILOMETRY
OPTICAL COHERENCE TOMOGRAPHY
PHASE-MEASURING PROFILOMETRY
AUTOMATIC-MEASUREMENT
OBJECTS HIDDEN
WIDE-FIELD
MICROSCOPY
Journal
IF:
3.3
Papers:
6.1W
Citations:
14.3W
Organization
Cited Papers
Application of Broccoli Leaf Powder in Gluten-Free Bread: An Innovative Approach to Improve Its Bioactive Potential and Technological Quality
Foods
IF0
Single-exposure full-field multi-depth imaging using low-coherence holographic multiplexing
OPTICS LETTERS
IF3.3
High-speed dual-view band-limited illumination profilometry using temporally interlaced acquisition
PHOTONICS RESEARCH
IF7.2
Three-dimensional imaging of macroscopic objects hidden behind scattering media using time-gated aperture synthesis
OPTICS EXPRESS
IF3.3

