most citedChalcogenide Metasurfaces Enabling Ultra-Wideband Detectors from Visible to Mid-infrared

1 citations · 1 across the 3 of their papers we have counts for

collaborators

5 papers

physics.optics2025

Anti-Interference Diffractive Deep Neural Networks for Multi-Object Recognition

Zhiqi Huang, Yufei Liu, Nan Zhang +11

Optical neural networks (ONNs) are emerging as a promising neuromorphic computing paradigm for object recognition, offering unprecedented advantages in light-speed computation, ult…

cond-mat.mtrl-sci2025

Weyl Semimetals: from Principles, Materials to Applications

Mengyuan Zhong, Nam Thanh Trung Vu, Wenhao Zhai +11

Weyl semimetals have attracted significant interest in condensed matter physics and materials science, due to their unique electronic and topological properties. These characterist…

physics.optics2025

Enabling Highly Efficient Infrared Silicon Photodetectors via Disordered Metasurfaces with Upconversion Nanoparticles

Wei Chen, Shutao Zhang, Chongwu Wang +12

Silicon photodetectors are highly desirable for their CMOS compatibility, low cost, and fast response speed. However, their application the infrared (IR) is limited by silicon's in…

physics.optics2025

Inverse Design of Chiral Structures for Giant Helical Dichroism

Chia-Chun Pan, Munseong Bae, Hongtao Wang +5

Investigating chiral light-matter interactions is essential for advancing applications in sensing, imaging, and pharmaceutical development. However, the chiroptical response in nat…

physics.optics20241 cited

Chalcogenide Metasurfaces Enabling Ultra-Wideband Detectors from Visible to Mid-infrared

Shutao Zhang, Shu An, Mingjin Dai +12

Thermoelectric materials can be designed to support optical resonances across multiple spectral ranges to enable ultra-wide band photodetection. For instance, antimony telluride (S…