Wafer alignment measurement using vortex beam interferometry and double diffraction by the same grating

High-performance wafer alignment is a cornerstone of the stringent overlay accuracy required in integrated circuit manufacturing. However, conventional alignment techniques often struggle with process-induced variations and signal noise. Building on phase grating alignment, we present a method that combines double diffraction by the same grating with vortex beam interferometry. Our approach incorporates two main advances. First, a double-pass optical configuration causes the diffracted beams to interact with the alignment mark twice, thereby enhancing the displacement-induced phase difference. Second, by exploiting the interference of conjugate vortex beams, the measurement of a microscopic phase change is converted into the measurement of a macroscopic rotation angle of the interference pattern, providing inherent immunity to common mode noise. We experimentally validated the concept and achieved a strong linear response (R 2 > 0.998) and a measurement repeatability better than 1.1 nm (1σ). The proposed technique offers a route for high accuracy wafer alignment and shows strong potential for applications in DUV and EUV lithography systems.

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Publication Details

Journal
Optics Express
Published
2026-10-05
DOI
https://doi.org/10.1364/oe.612726
Primary Topic
Optical measurement and interference techniques
Type
article
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Wafer alignment measurement using vortex beam interferometry and double diffraction by the same grating

Jinming Gao, Peng Feng, Zhongliang Li, Lijun Zhou et al.
Optics Express
Optical measurement and interference techniques
article

Wafer alignment measurement using vortex beam interferometry and double diffraction by the same grating

Jinming Gao, Peng Feng, Zhongliang Li, Lijun Zhou, Xiangzhao Wang, Kaining Zhang, Lan Wu, Li Chen
article en

Abstract

High-performance wafer alignment is a cornerstone of the stringent overlay accuracy required in integrated circuit manufacturing. However, conventional alignment techniques often struggle with process-induced variations and signal noise. Building on phase grating alignment, we present a method that combines double diffraction by the same grating with vortex beam interferometry. Our approach incorporates two main advances. First, a double-pass optical configuration causes the diffracted beams to interact with the alignment mark twice, thereby enhancing the displacement-induced phase difference. Second, by exploiting the interference of conjugate vortex beams, the measurement of a microscopic phase change is converted into the measurement of a macroscopic rotation angle of the interference pattern, providing inherent immunity to common mode noise. We experimentally validated the concept and achieved a strong linear response (R 2 > 0.998) and a measurement repeatability better than 1.1 nm (1σ). The proposed technique offers a route for high accuracy wafer alignment and shows strong potential for applications in DUV and EUV lithography systems.

Optics ExpressVol. 34(21)
Chinese Academy of Sciences (CN), Shanghai Institute of Optics and Fine Mechanics (CN)
Openalex Percentile: Top 14%
Optical measurement and interference techniques
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Wafer alignment measurement using vortex beam interferometry and double diffraction by the same grating — Jinming Gao, Peng Feng, et al. · Optics Express (2026) | TGRS Research Map | TGRS