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Non-Interleaved Shared-Aperture Full-Stokes Metalens via Prior-Knowledge-Driven Inverse Design
Yuzhong Wang1, Yifei Wang1, Axiang Yu1
1Department of Microwave Engineering, School of Electronics and Information Engineering, Harbin Institute of Technology, Harbin, 150001, China.
Advanced Materials (Deerfield Beach, Fla.)
|November 25, 2024
Summary
A novel metalens enables high-accuracy full-Stokes imaging without bulky components. This breakthrough in metasurface technology simplifies polarimetric imaging and opens new applications.
Area of Science:
- Optics and Photonics
- Materials Science
- Electromagnetics
Background:
- Characterizing electromagnetic wave polarization is crucial for materials science, biomedical applications, and imaging.
- Metasurfaces offer potential for integrated full-Stokes imagers, but current designs are bulky and complex.
- Existing metasurface imagers often use interleaved or cascaded designs, leading to performance issues and misalignment.
Purpose of the Study:
- To propose a non-interleaved, shared-aperture full-Stokes metalens for high-accuracy imaging.
- To overcome limitations of existing metasurface-based imagers, such as bulkiness and performance deterioration.
- To demonstrate the metalens' application in W-band passive imaging and explore contactless surface slope measurements.
Main Methods:
- Utilized a prior-knowledge-driven inverse design methodology to create the full-Stokes metalens.
- Integrated the metalens into a W-band passive imaging system for polarimetric imaging.
- Employed a 3D reconstruction method to explore multi-polarization information for surface measurements.
Main Results:
- Developed a metalens capable of diffraction-limited full-Stokes imaging without ancillary components.
- Achieved high-accuracy polarimetric imaging in the W-band, reducing reliance on traditional radiometer components.
- Demonstrated the potential for contactless surface slope measurements using multi-polarization information.
Conclusions:
- The proposed non-interleaved metalens offers a compact and efficient solution for full-Stokes imaging.
- This technology simplifies polarimetric imaging systems and reduces costs compared to traditional methods.
- The work paves the way for new paradigms in full-Stokes imager design and expands metasurface polarimetric imaging applications.

