collaborators

7 papers

physics.optics2021

Reconfigurable Plasmonic Chirality: Fundamentals and Applications

Frank Neubrech, Mario Hentschel, Na Liu

Molecular chirality is a geometric property that is of great importance in chemistry, biology, and medicine. Recently, plasmonic nanostructures that exhibit distinct chiroptical re…

physics.optics2021

Dynamic plasmonic color generation enabled by functional materials

Frank Neubrech, Xiaoyang Duan, Na Liu

Displays are an indispensable medium to visually convey information in our daily life. Although conventional dye-based color displays have been rigorously advanced by world leading…

physics.optics2021

Addressable metasurfaces for dynamic holography and optical information encryption

Jianxiong Li, Simon Kamin, Guoxing Zheng +3

Metasurfaces enable manipulation of light propagation at an unprecedented level, benefitting from a number of merits unavailable to conventional optical elements, such as ultracomp…

physics.app-ph2021

Chiral Plasmonic Hydrogen Sensors

Marcus Matuschek, Dhruv Pratap Singh, Hyeon-Ho Jeong +5

In this article, a chiral plasmonic hydrogen-sensing platform using palladium-based nanohelices is demonstrated. Such 3D chiral nanostructures fabricated by nanoglancing angle depo…

cond-mat.mtrl-sci2021

Stabilizing -MgH at Nanotwins in Mechanically Constrained Nanoparticles

Jochen A. Kammerer, Xiaoyang Duan, Frank Neubrech +3

Reversible hydrogen uptake and the metal/dielectric transition make the Mg/MgH system a prime candidate for solid state hydrogen storage and dynamic plasmonics. However, high d…

physics.app-ph2021

Reconfigurable Multistate Optical Systems Enabled by VO2 Phase Transitions

Xiaoyang Duan, Samuel T. White, Yuanyuan Cui +4

Reconfigurable optical systems are the object of continuing, intensive research activities, as they hold great promise for realizing a new generation of compact, miniaturized, and…