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20242026
most citedDeterministic formation of carbon-functionalized quantum emitters in hexagonal boron nitride

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physics.optics2026

Near-unity efficiency optical vortex generation in van der Waals materials

Sujeong Byun, Munseong Bae, Hangsung Cho +4

Optical spin-orbit coupling provides a promising, fabrication-free route for developing ultra-compact optical vortex generators. However, the conversion efficiency has been theoret…

physics.optics2026

Inverse-Designed Metasurfaces for Compact Optical Skyrmion Generation with High Topological Fidelity

Donghyun Park, Alex Song, Haejun Chung +1

Optical skyrmions are structured vector fields with nontrivial polarization topology and subwavelength-scale features. One common approach to generating optical skyrmions is the su…

physics.optics2026

Enhancing Volumetric Optical Chirality through 2D-3D Structural Design Evolution

Chia-Te Chang, Xiaoyan Zhou, Dmitrii Gromyko +6

Circular dichroism (CD) sensing plays a pivotal role in probing molecular chirality in biomedical sciences. However, engineering superchiral electromagnetic fields that can reliabl…

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.optics2024

Spin-Orbit Coupling for Optical Vortex Generation in van der Waals Materials

Jaegang Jo, Sujeong Byun, Munseong Bae +3

An optical vortex beam has attracted significant attention across diverse applications, including optical manipulation, phase-contrast microscopy, optical communication, and quantu…

physics.optics2024

Bidirectional Adversarial Autoencoders for the design of Plasmonic Metasurfaces

Yuansan Liu, Jeygopi Panisilvam, Peter Dower +2

Deep Learning has been a critical part of designing inverse design methods that are computationally efficient and accurate. An example of this is the design of photonic metasurface…