English

Polarization-controlled strong light-matter interaction with templated molecular aggregates

Optics 2025-09-01 v2 Materials Science

Abstract

We demonstrate strong light-matter interaction for a layer of templated merocyanine molecules in a planar microcavity. Using a single layer of graphene nanoribbons as a templating layer, we obtain an aligned layer of aggregated molecules. The molecular layer displays anisotropic optical properties resembling those of a biaxial crystal. The anisotropic excitonic component in the cavity results in strongly polarization-dependent light-matter interaction and in increased Rabi-energies. The increased light-matter interaction is possibly due to reduced molecular disorder in the templated molecular layer. This conclusion is supported by an analysis based on a multi-oscillator model. We further use photoluminescence microspectroscopy to demonstrate that the light-matter coupling is spatially homogeneous. Our study introduces molecular templating to strong light-matter studies. The reduced disorder of the system as a consequence of templating is highly beneficial for engineering light-matter interaction.

Keywords

Cite

@article{arxiv.2503.09798,
  title  = {Polarization-controlled strong light-matter interaction with templated molecular aggregates},
  author = {Roland Schäfer and Philipp Weitkamp and Otgonbayar Erdene-Ochir and Klaus Meerholz and Klas Lindfors},
  journal= {arXiv preprint arXiv:2503.09798},
  year   = {2025}
}
R2 v1 2026-06-28T22:18:12.471Z