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20242026
most citedFlat Bands from Diffraction in Periodic Systems

1 citations · 1 across the 3 of their papers we have counts for

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5 papers

physics.optics2026

Nanoparticle Arrays for Efficient Organic Light-Emitting Diode Emission Management

Aron J. J. Dahlberg, Matas Gužauskas, Malek Mahmoudi +16

The paper demonstrates that embedding plasmonic nanoparticle arrays in OLED layers can boost light outcoupling and control the direction and polarization of emission, achieving up…

physics.optics2026

Chains of nanoparticles for flat-band emission and lasing

Rebecca Heilmann, Joel Lehikoinen, Sioneh Eyvazi +2

Controlling light-matter interactions is central to photonic technologies ranging from lasers to optical information processing. Suitably designed photonic structures give rise to…

physics.optics20261 cited

Flat Bands from Diffraction in Periodic Systems

Joel Lehikoinen, Rebecca Heilmann, Aron J. J. Dahlberg +5

Periodic photonic structures enable precise control over the light-matter interaction through band structure engineering. Certain lattice geometries exhibit dispersionless flat ban…

physics.optics2025

Flat-Band Lasing in Silicon Waveguide-Integrated Metasurfaces

Sioneh Eyvazi, Evgeny A. Mamonov, Rebecca Heilmann +2

Photonic flat bands are crucial for enabling strong localization of light and enhancing light-matter interactions, as well as tailoring the angular distribution of emission from ph…

physics.optics2024

High topological charge lasing in quasicrystals

Kristian Arjas, Jani M. Taskinen, Rebecca Heilmann +2

Photonic modes exhibiting a polarization winding akin to a vortex possess an integer topological charge. Lasing with topological charge 1 or 2 can be realized in periodic lattices…