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Updated: Feb 21, 2026

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USTSR: a U-shaped swin transformer framework for super-resolution in solid-state THz array imaging systems.
Optics Express
|February 20, 2026
Summary
This study introduces a novel terahertz (THz) imaging system and a transformer-based super-resolution neural network (USTSR) to significantly improve image resolution and reduce noise in THz imaging for various applications.
Area of Science:
- Optics and Photonics
- Artificial Intelligence
- Image Processing
Background:
- Terahertz (THz) imaging offers potential for security, biomedical, and industrial applications.
- Current THz imaging is limited by low resolution, noise, and slow scanning speeds.
- Existing methods struggle with diffraction artifacts and spectral resolution.
Purpose of the Study:
- To develop an integrated THz imaging approach for real-time, high-resolution imaging.
- To enhance image quality by suppressing noise and artifacts without complex hardware.
- To introduce a novel evaluation strategy for THz image quality assessment.
Main Methods:
- Integrated a solid-state frequency multiplier-based focal-plane THz array system for real-time imaging.
- Developed a transformer-based super-resolution neural network (USTSR) specifically for THz image enhancement.
- Implemented a dual-metric evaluation strategy using MS-SSIM and FID for THz A-scan quality.
Main Results:
- USTSR significantly enhances image resolution and suppresses noise tailored for THz imaging.
- The integrated system enables rapid, real-time THz imaging.
- Achieved superior performance with 33.17 dB PSNR and 0.86 SSIM compared to state-of-the-art methods.
Conclusions:
- The developed integrated THz imaging system and USTSR offer robust, high-fidelity imaging capabilities.
- This approach overcomes limitations of conventional THz imaging, enabling faster and more accurate measurements.
- Demonstrates broad applicability for practical measurement tasks in security, diagnostics, and testing.
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