most citedRoadmap on Nonlocality in Photonic Materials and Metamaterials

42 citations · 74 across the 5 of their papers we have counts for

collaborators

6 papers

physics.optics202513 cited

Temperature-dependent excitonic light manipulation with atomically-thin optical elements

Ludovica Guarneri, Qitong Li, Thomas Bauer +5

Monolayer 2D semiconductors, such as WS2, exhibit uniquely strong light-matter interactions due to exciton resonances that enable atomically-thin optical elements. Similar to geome…

physics.optics202519 cited

Acoustic wave modulation of gap plasmon cavities

Skyler P. Selvin, Majid Esfandyarpour, Anqi Ji +5

The role of metallic nanostructures in nanophotonics is expected to expand if ways to electrically manipulate their optical resonances at high speed can be identified. Here, we cap…

physics.optics2025

Apparent Resonance Splitting in Self-Coupled Excitonic Systems

Avishek Sarbajna, Qitong Li, Dorte Rubæk Danielsen +6

Thin films of high-refractive-index excitonic materials enable self-coupling by simultaneously supporting intrinsic excitonic transitions and optical resonances. These optical reso…

cond-mat.mes-hall202542 cited

Roadmap on Nonlocality in Photonic Materials and Metamaterials

Francesco Monticone, N. Asger Mortensen, Antonio I. Fernández-Domínguez +63

Photonic technologies continue to drive the quest for new optical materials with unprecedented responses. A major frontier in this field is the exploration of nonlocal (spatially d…

physics.optics2025

GHz-speed wavefront shaping metasurface modulators enabled by resonant electro-optic nanoantennas

Sahil Dagli, Jiyong Shim, Hamish Carr Delgado +12

Electrically tunable metasurfaces that control the amplitude and phase of light through biasing of nanoscale antennas present a route to compact, sub-micron thick modulator devices…

physics.optics2024

Highly efficient, tunable, electro-optic metasurfaces based on quasi-bound states in the continuum

Christopher Damgaard-Carstensen, Torgom Yezekyan, Mark L. Brongersma +1

Ultrafast and highly efficient dynamic optical metasurfaces enabling truly spatiotemporal control over optical radiation are poised to revolutionize modern optics and photonics, bu…