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20192021
most citedDeep-Learning-Enabled Inverse Engineering of Multi-Wavelength Invisibility-to-Superscattering Switching with Phase-Change Materials

27 citations · 33 across the 6 of their papers we have counts for

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physics.optics20212 cited

Optical Brewster metasurfaces exhibiting ultra-broadband reflectionless absorption and extreme angular-asymmetry

Huiying Fan, Jensen Li, Yun Lai +1

Impedance mismatch between free space and absorptive materials is a fundamental issue plaguing the pursue of high-efficiency light absorption. In this work, we design and numerical…

physics.optics2021

Relaying Topological Interface States for Negative Refraction of Bulk Waves

Hongchen Chu, Ze-Guo Chen, Yun Lai +1

Topological notions in physics have become a powerful perspective that leads to the discoveries of topological interface states (TISs). In this work, we present a scheme to achieve…

physics.optics2020

Three-dimensional Electromagnetic Void Space

Changqing Xu, Hongchen Chu, Jie Luo +3

We report a realization of three-dimensional (3D) electromagnetic void space. Despite occupying a finite volume of space, such a medium is optically equivalent to an infinitesimal…

physics.optics20201 cited

Breakdown of Maxwell Garnett theory due to evanescent fields at deep-subwavelength scale

Ting Dong, Jie Luo, Hongchen Chu +2

Deep-subwavelength all-dielectric composite materials are believed to tightly obey the Maxwell Garnett effective medium theory. Here, we demonstrate that the Maxwell Garnett theory…

physics.optics202027 cited

Deep-Learning-Enabled Inverse Engineering of Multi-Wavelength Invisibility-to-Superscattering Switching with Phase-Change Materials

Jie Luo, Xun Li, Xinyuan Zhang +5

Inverse design of nanoparticles for desired scattering spectra and dynamic switching between the two opposite scattering anomalies, i.e. superscattering and invisibility, is import…

physics.optics2020

Nesting and Degeneracy of Mie Resonances of Dielectric Cavities within Zero-Index Materials

Xueke Duan, Haoxiang Chen, Yun Ma +6

Resonances in optical cavities have been used to manipulate light propagation, enhance light-matter interaction, modulate quantum states, and so on. However, in traditional cavitie…