2D correlations in the van der Waals ferromagnet CrBr$_{3}$ using high frequency electron spin resonance spectroscopy
C. L. Saiz, J. A. Delgado, J. van Tol, T. Tartaglia, F. Tafti, S. R., Singamaneni

TL;DR
This study uses high-frequency ESR spectroscopy to reveal two-dimensional magnetic correlations and BKT-like behavior in bulk CrBr3, challenging the traditional 3D ferromagnetic description of this van der Waals magnet.
Contribution
The paper provides the first evidence of 2D magnetic correlations and BKT-like behavior in bulk CrBr3 using high-frequency ESR spectroscopy, highlighting the importance of spin-sensitive techniques.
Findings
ESR linewidth follows a BKT transition model indicating 2D correlations.
Resonance field exhibits a $(3cos^2{ heta} - 1)$ angular dependence.
Linewidth shows a $(3cos^2{ heta} - 1)^2$ angular dependence, suggesting 2D magnetic behavior.
Abstract
Broadening the knowledge and understanding on the magnetic correlations in van der Waals layered magnets is critical in realizing their potential next-generation applications. In this study, we employ high frequency (240 GHz) electron spin resonance (ESR) spectroscopy on plate-like CrBr to gain insight into the magnetic interactions as a function of temperature (200 - 4 K) and the angle of rotation . We find that the temperature dependence of the ESR linewidth is well described by the Ginzberg-Landau critical model as well as Berezinskii-Kosterlitz-Thouless (BKT) transition model, indicative of the presence of two-dimensional (2D) correlations. This suggests that the three-dimensional ferromagnet CrBr, which has been described as an Ising or Heisenberg ferromagnet, could present 2D magnetic correlations and BKT-like behavior even in its bulk form; an observation…
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