Distinct magneto-optical response of Frenkel and Wannier excitons in CrSBr

M Maciej Śmiertka M Michał Rygała K Katarzyna Posmyk P Paulina Peksa M Mateusz Dyksik D Dimitar Pashov K Kseniia Mosina Z Zdenek Sofer M Mark van Schilfgaarde F Florian Dirnberger M Michał Baranowski S Swagata Acharya P Paulina Plochocka

Abstract

Abstract Excitons in recently discovered two-dimensional magnetic semiconductors have emerged as a promising vehicle for optoelectronic and spin-photonic applications. To exploit novel possibilities magnetic degrees of freedom offer, insight into the interplay of magnetism, lattice and optical excitations becomes essential. We consider Chromium Sulphur Bromide, which has two kinds of excitons, X B at 1.8 eV and X A at 1.38 eV. Here we show, through a combination of many body perturbation theory and experiment, that X B is an order of magnitude more sensitive to magnetic and lattice perturbations than X A . We trace the difference to the latter being localised (Frenkel-like), while the former is delocalised (Wannier-Mott-like) – a coexistence rarely seen in two-dimensional materials. This finding is supported by the strong temperature and magnetic field (up to 85 Tesla) dependent shifts in optical response for X B (much smaller for X A ), and we show it is related to X B ’s tendency for delocalisation (in-plane and out-of-plane) and enhanced coupling with A g phonon modes.

Article Details

Volume / Issue Vol. 17, Issue 1
Published January 17, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (13)

M

Maciej Śmiertka

M

Michał Rygała

K

Katarzyna Posmyk

P

Paulina Peksa

M

Mateusz Dyksik

D

Dimitar Pashov

K

Kseniia Mosina

Z

Zdenek Sofer

M

Mark van Schilfgaarde

F

Florian Dirnberger

M

Michał Baranowski

S

Swagata Acharya

P

Paulina Plochocka