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

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

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8 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.optics2026

Gradient-based optimization of scatterer arrangements based on the T-matrix method

Nigar Asadova, Jan David Fischbach, Renaud Vallée +6

The demand for inverse design is increasing as the ability to fabricate sub-10 nm features expands the design space by orders of magnitude. Efficient inverse design benefits from d…

physics.optics2026

Pole-Expansion of the T-Matrix Based on a Matrix-Valued AAA-Algorithm

Jan David Fischbach, Fridtjof Betz, Lukas Rebholz +6

The transition matrix (T-matrix) is a complete description of an object's linear scattering response. As such, it has found wide adoption for the theoretical and computational desc…

physics.comp-ph2025

Towards a fully differentiable digital twin for solar cells

Marie Louise Schubert, Houssam Metni, Jan David Fischbach +18

Maximizing energy yield (EY) - the total electric energy generated by a solar cell within a year at a specific location - is crucial in photovoltaics (PV), especially for emerging…

physics.optics2025

Uncovering hidden resonances in non-Hermitian systems with scattering thresholds

Fridtjof Betz, Felix Binkowski, Jan David Fischbach +5

The points where diffraction orders emerge or vanish in the propagating spectrum of periodic non-Hermitian systems are referred to as scattering thresholds. Close to these branch p…