activity
20242026
collaborators

5 papers

quant-ph2026

Design of monolithic microcavities for enhancing organic quantum emitters

Tim Hebenstreit, Jaime Gimeno Balaguer, Fridtjof Betz +6

Single organic molecules are a well-established platform for high-quality single-photon generation: they can emit lifetime-limited photons with high purity and indistinguishability…

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.optics2025

High Purcell enhancement in all-TMDC nanobeam resonator designs with active monolayers for nanolasers

Felix Binkowski, Aris Koulas-Simos, Fridtjof Betz +9

We propose a nanobeam resonator incorporating an active monolayer, designed to achieve a high Purcell enhancement. The resonator is fully composed of transition-metal-dichalcogenid…

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…

physics.comp-ph2024

Resonance modes in microstructured photonic waveguides: Efficient and accurate computation based on AAA rational approximation

Felix Binkowski, Fridtjof Betz, Martin Hammerschmidt +2

We present a framework for the efficient and accurate computation of resonance modes in photonic waveguides. The framework is based on AAA rational approximation with the applicati…