Authors
Keke Zhang, Yanhong Gao, Yiqun Ji, Weitian Chen, Yuning Dong
Published in
Applied optics. Volume 65. Issue 23. Pages 7692-7701. Aug 10, 2026.
Abstract
Current confocal endoscopy techniques have difficulties in achieving high spectral resolution imaging of lesion cell in vivo, which significantly hinders the early accurate diagnosis. In this paper, a novel, to our knowledge, metalens-based imaging spectrometer (MLIS) with the capability of obtaining both a high resolution and a high dispersion linearity in a compact structure for confocal endoscopy imaging, is proposed. First, the ratio of the focal length to dispersion width of the MLIS is studied to achieve both high dispersion linearity and high spatial resolution imaging. Then, to realize a high spectral resolution, how the phase distribution of the dispersive metalens affects the dispersion width of the system is analytically studied. Moreover, the polynomial terms of the phase distribution are further studied to balance the astigmatism and coma aberration of MLIS. Accordingly, an MLIS with only 6mm×2.4mm diameter in volume in the wavelength band from 780 to 860 nm, achieving both a high dispersion linearity and a high spectral resolution of 0.4 nm, is proposed. It paves the way for developing an MLIS with high resolution and high dispersion linearity for lesion cell diagnosis in vivo.
PMID:
42593439
Bibliographic data and abstract were imported from PubMed on 13 Aug 2026.
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