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Single-shot angle-resolved spectroscopic micro-ellipsometry with full-field imaging capability.

Created on 21 Aug 2026

Authors

Jing Hu, Xiuguo Chen, Shilong Yang, Zirong Tang, Shiyuan Liu

Published in

The Review of scientific instruments. Volume 97. Issue 8. Aug 01, 2026.

Abstract

High-volume manufacturing of miniaturized microelectronic and optoelectronic devices demands high-throughput, in-line metrology with high lateral resolution and multidimensional sensitivity. We demonstrate a single-shot angle-resolved spectroscopic micro-ellipsometry (SAR-SE) system integrating snapshot channeled spectropolarimetry with high-numerical-aperture (high-NA) microscopy. SAR-SE enables the simultaneous acquisition of angularly and spectrally resolved ellipsometric information in a single exposure, achieving a spectral range of 410-790 nm, incident angles spanning 0°-70°, a focused spot size of 3.15-12.6 μm, a lateral resolution better than 0.78 μm, and acquisition times down to 150 ms. A comprehensive system model incorporates residual polarization effects arising from high-NA objectives and beam splitters, as well as alignment errors, providing theoretical guidance for snapshot micro-ellipsometry design. An in situ calibration using a single spherical mirror determines retarder retardances and residual polarization factors without pre-calibrated references. Combined with physics-informed reconstruction, SAR-SE achieves robust Mueller-matrix recovery despite azimuthal misalignment and noise, demonstrating an accuracy better than ±0.005 for the spherical mirror. Experiments on a series of SiO2/Si films show good overall agreement with commercial spectroscopic ellipsometers and yield a thickness repeatability of 0.017-0.045 nm. These results validate SAR-SE's potential for monitoring nanoscale films and sub-micrometer structures in high-volume manufacturing.

PMID:
42627235
Bibliographic data and abstract were imported from PubMed on 21 Aug 2026.

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