most citedResonant states reveal strong light-matter coupling in nanophotonic cavities

1 citations · 1 across the 2 of their papers we have counts for

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6 papers

physics.optics20261 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.optics2026

Broken-symmetry phenomena enhanced by quasi-bound states in the continuum

Jan David Fischbach, Lukas Rebholz, Nikita Ustimenko +3

Many of the most powerful and elegant models in physics are grounded in symmetries. In electrodynamics, for example, geometric symmetries govern the observable effects of light-mat…

physics.optics2025

A Framework for Formulating Polychromatic Theories of Emission

Ivan Fernandez-Corbaton, Maxim Vavilin, Markus Nyman

The emission of energy as electromagnetic radiation is ubiquitous, in particular because objects release thermal energy in the form of photons. Most theories of thermal radiation a…

physics.optics2025

Efficient computation of thermal radiation from biperiodic layered systems using the T-matrix method

Martin Gabbert, Markus Nyman, Lukas Rebholz +2

Metasurfaces are becoming important tools for the control of thermal radiation. Understanding their functional possibilities on computational grounds requires evaluating the respon…

physics.optics2025

Photonic time crystals assisted by quasi-bound states in the continuum

P. Garg, E. Almpanis, L. Zimmer +8

Photonic time crystals are a class of artificial materials that have only recently been explored. They are characterized by the ultrafast modulation of the material properties in t…

physics.optics2025

Studying thermal radiation with T-matrices

Juan Diego Mazo-Vásquez, Markus Nyman, Marjan Krstić +3

We introduce a basic formalism for computing thermal radiation by combining Waterman's T-matrix method with an algebraic approach to light-matter interactions. The formalism applie…