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20192026
most citedAttoliter Mie Void Sensing

12 citations · 36 across the 12 of their papers we have counts for

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physics.optics2026

Extreme light confinement mediated by the transverse Kerker effect

Sergei Gladyshev, Connor Heimig, Adrià Canós Valero +7

Dielectric nanoparticles can be engineered to scatter light predominantly in the transverse direction, a phenomenon known as the transverse Kerker effect. Although complete cancela…

physics.optics2026★ 1 cited

Mie Voids as broadband directional light sources

Benjamin Reichel, Adrià Canós Valero, Mario Hentschel +2

The Kerker effect arises from the interference between electric and magnetic multipoles, enabling directional light scattering in nanophotonics. However, conventional dielectric an…

physics.optics2025★ 2 cited

Resonant states reveal strong light-matter coupling in nanophotonic cavities

Jan David Fischbach, Sergei Gladyshev, Adrià Canós Valero +3

Photonic resonances enable control over light-matter interactions, but many key phenomena only emerge in the strong-coupling regime where light and matter excitations fully hybridi…

physics.optics2025

Hybrid Superscattering Driven by Toroidal Dipole

D. Kislov, D. Borovkov, L. Huang +13

The dynamic toroidal dipole is a unique radiation source beyond standard multipoles. Since its first demonstration 15 years ago, it has attracted growing theoretical and experiment…

physics.optics2025★ 1 cited

Resonant states of structured photonic time crystals

Adrià Canós Valero, Sergei Gladyshev, David Globosits +3

Photonic time crystals (PTCs) are spatially uniform media with periodic modulation in time, enabling momentum bandgaps and the parametric amplification of light. While their potent…

physics.optics2024★ 12 cited

Attoliter Mie Void Sensing

Serkan Arslan, Micha Kappel, Adrià Canós Valero +7

Traditional nanophotonic sensing schemes utilize evanescent fields in dielectric or metallic nanoparticles, which confine far-field radiation in dispersive and lossy media. Apart f…