most citedMachine Learning for Mie-Tronics

3 citations · 4 across the 6 of their papers we have counts for

collaborators

6 papers

cs.CV2024

PVAFN: Point-Voxel Attention Fusion Network with Multi-Pooling Enhancing for 3D Object Detection

Yidi Li, Jiahao Wen, Bin Ren +5

The integration of point and voxel representations is becoming more common in LiDAR-based 3D object detection. However, this combination often struggles with capturing semantic inf…

physics.optics20241 cited

Nano-Focusing of Vortex Beams with Hyperbolic Metamaterials

Wenhao Li, Jacob LaMountain, Evan Simmons +7

The synergy of judiciously engineered nanostructures and complex topology of light creates unprecedented opportunities for tailoring light-matter interactions on the nanoscale. Ele…

physics.optics2024

Observation of temporal topological boundary states of light in a momentum bandgap

Yudong Ren, Kangpeng Ye, Qiaolu Chen +8

Topological phases have prevailed across diverse disciplines, spanning electronics, photonics, and acoustics. Hitherto, the understanding of these phases has centred on energy (fre…

physics.optics2024

Boundary-induced topological chiral extended states in Weyl metamaterial waveguides

Ning Han, Fujia Chen, Mingzhu Li +9

In topological physics, it is commonly understood that the existence of the boundary states of a topological system is inherently dictated by its bulk. A classic example is that th…

cond-mat.mes-hall2023

Real higher-order Weyl photonic crystal

Yuang Pan, Chaoxi Cui, Qiaolu Chen +9

Higher-order Weyl semimetals are a family of recently predicted topological phases simultaneously showcasing unconventional properties derived from Weyl points, such as chiral anom…

physics.optics20233 cited

Machine Learning for Mie-Tronics

Wenhao Li, Hooman Barati Sedeh, Willie J. Padilla +3

Electromagnetic multipole expansion theory underpins nanoscale light-matter interactions, particularly within subwavelength meta-atoms, paving the way for diverse and captivating o…