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physics.optics2025

MetasurfaceViT: A generic AI model for metasurface inverse design

Jiahao Yan, Jilong Yi, Churong Ma +3

Metasurfaces, sub-wavelength artificial structures, can control light's amplitude, phase, and polar ization, enabling applications in efficient imaging, holograms, and sensing. Rec…

physics.optics2025

Light-Emitting Microfibers from Lotus Root for Eco-friendly Optical Waveguides and Biosensing

X. Yang, L. Xu, S. Xiong +8

Optical biosensors based on micro-/nano-fibers are highly valuable for probing and monitoring liquid environments and bioactivity. Most of current optical biosensors, however, are…

physics.optics2024

Bayer-type Vis-NIR Routing via Inverse Design for Submicron-pixel Image Sensing Chip

Xianguang Yang, Shijie Xiong, Fangchang Tan +5

With the advent of high-precision nanoscale lithography technology, high-resolution image sensing has experienced rapid development in recent years. Currently, mainstream commercia…

physics.optics2024

Metasurface-Based Full-Parameter Optical Multiplexing

Rui Wei, Hongsheng Shi, Boyou Wang +2

Optical multiplexing is a key technique that enhances the capacity of optical systems by independently modulating various optical parameters to carry distinct information. Among th…

physics.optics2024

High-Capacity Metasurface at Limits of Polarization and Wavelength Multiplexing

Yanjun Bao, Hongsheng Shi, Rui Wei +4

Polarization and wavelength multiplexing are the two most widely employed techniques to improve the capacity in the metasurfaces. Existing works have pushed each technique to its i…

physics.optics2024

Single-Shot Simultaneous Intensity, Phase, and Polarization Imaging with Metasurface

Yanjun Bao, Baojun Li

Optical imaging of the intensity, phase and polarization distributions of optical field is fundamental to numerous applications. Traditional methods rely on bulky optical component…