paper

Extreme Polarization of the Optical Gap and High-Energy Exciton Landscape in CrSBr

arXiv:2608.29566

Abstract

We reveal a strongly anisotropic excitonic landscape in monolayer and bulk-like CrSBr using optical absorption spectroscopy and -Bethe-Salpeter equation calculations. The direct absorptive determination of the lowest bright optical onsets i.e. and excitons for the two in-plane polarization eigenaxes yield an in-plane optical gap anisotropy of meV. This is the highest observed value for any material in the near-infrared-to-visible spectral region to the best of our knowledge. Energetically above, we identify multiple strongly polarized excitons spanning eV to eV selectively aligned along the two orthogonal axes. A resonance , located meV below the progressively transfers oscillator strength to , a behavior consistent with a coupled trion (Fermi-polarion)/exciton pair. Our experiments also provide polarization-resolved broadband dielectric functions of CrSBr. These results establish CrSBr as a strongly polarization-selective excitonic system and highlight its potential for polarization-selective optoelectronics enabled with its large optical-gap anisotropy.

15 pages, 4 figures in main text