activity
20242026
most citedFixed-Attention Mechanism for Deep-Learning-Assisted Design of High-Degree-of-Freedom 3D Metamaterials

5 citations · 6 across the 5 of their papers we have counts for

collaborators

5 papers

physics.optics2026

Towards a universal meta-optics solver via large language models

Huanshu Zhang, Lei Kang, Yuyan Chen +3

Metasurface design increasingly requires fast models that can operate across structurally distinct device families, rather than retraining a separate surrogate for every geometry c…

physics.optics2026

Mitigating Electrode-Induced Polarization Artifacts in Miniaturized Terahertz Detectors via a Ring-Shaped Electrode Design

Hongjia Zhu, Shaojing Liu, Zhaolong Cao +5

Terahertz (THz) polarization detection provides critical insights into material properties but faces a fundamental constraint upon miniaturization: subwavelength metallic electrode…

physics.optics20255 cited

Fixed-Attention Mechanism for Deep-Learning-Assisted Design of High-Degree-of-Freedom 3D Metamaterials

Huanshu Zhang, Lei Kang, Sawyer D. Campbell +3

The traditional design approaches for high-degree-of-freedom metamaterials have been computationally intensive and, in many cases, even intractable due to the vast design space. In…

physics.app-ph2024

Harmonizing Material Quantity and Terahertz Wave Interference Shielding Efficiency with Metallic Borophene Nanosheets

Haojian Lin, Ximiao Wang, Zhaolong Cao +7

Materials with electromagnetic interference (EMI) shielding in the terahertz (THz) regime, while minimizing the quantity used, are highly demanded for future information communicat…

physics.app-ph20241 cited

Monolithic Multi-parameter Terahertz Nano-micro Detector Based on Plasmon Polariton Atomic Cavity

Huanjun Chen, Ximiao Wang, Shaojing Liu +6

Terahertz signals hold significant potential for ultra-wideband communication and high-resolution radar, necessitating miniaturized detectors capable of multi-parameter detection o…