Spectrally-encoded non-scanning imaging through a fiber
Abstract
With the advent of neuroimaging and microsurgery, there is a rising need for capturing images through an optical fiber. We present an approach of imaging through a single fiber without mechanical scanning by implementing spatial-spectral encoding. The spectral encoding is achieved through a microfabricated spectral filter array, where light from different spatial pixels is coded with a highly orthogonal spectrum. The image is then computationally recovered via pseudo inverse of the encoding process. We demonstrate imaging of a binary object at the proximity of the spectral filter array using wavelength band. The recovered image maintains an error rate of when measured using a spectrometer with a spectral resolution of . The image remains unchanged with fiber bending or moving. Thus our approach shows a more robust way to image through a single optical fiber, with potential applications in compact endoscopes and angioscopes.
Keywords
Cite
@article{arxiv.2305.17113,
title = {Spectrally-encoded non-scanning imaging through a fiber},
author = {Ningzhi Xie and Quentin A. A. Tanguy and Johannes E. Fröch and Karl F. Böhringer and Arka Majumdar},
journal= {arXiv preprint arXiv:2305.17113},
year = {2023}
}