English

Intrinsic defects as a source of $\textit{n}$-type conductivity in CrSBr

Materials Science 2025-12-09 v2 Mesoscale and Nanoscale Physics

Abstract

Understanding and controlling native defects is essential for unlocking the full potential of two-dimensional magnetic semiconductors. Here, angle-resolved photoemission spectroscopy (ARPES) and first-principles calculations are used to explore the electronic properties of bulk CrSBr. ARPES measurements reveal clear signatures of conduction band filling in as-grown crystals, indicative of unintentional doping. An analysis of intrinsic defects based on density functional theory (DFT) identifies chromium interstitials (CriCr_i) stabilized between CrSBr layers as the most favorable shallow donors. Bromine-on-sulfur antisites (BrSBr_S) and bromine vacancies (VBrV_{Br}) are also found to act as potential donors, albeit with deeper ionization energies. Our results shed light on the origin of unintentional n\textit{n}-type doping of CrSBr and pave the way for new strategies for defect control and electronic property tuning in this van der Waals magnet.

Keywords

Cite

@article{arxiv.2506.06553,
  title  = {Intrinsic defects as a source of $\textit{n}$-type conductivity in CrSBr},
  author = {Timur Biktagirov and Wolf Gero Schmidt and Karl Jakob Schiller and Michele Capra and Jonah Elias Nitschke and Lasse Sternemann and Anna Isaeva and Mirko Cinchetti},
  journal= {arXiv preprint arXiv:2506.06553},
  year   = {2025}
}