Spin order and fluctuations in the EuAl$_4$ and EuGa$_4$ topological antiferromagnets: A $\mu$SR study
X. Y. Zhu, H. Zhang, D. J. Gawryluk, Z. X. Zhen, B. C. Yu, S. L. Ju,, W. Xie, D. M. Jiang, W. J. Cheng, Y. Xu, M. Shi, E. Pomjakushina, Q. F. Zhan,, T. Shiroka, and T. Shang

TL;DR
This study uses muon-spin rotation and relaxation techniques to investigate the magnetic order and spin fluctuations in EuAl4 and EuGa4, revealing complex magnetic behaviors relevant to their topological properties.
Contribution
It provides a detailed microscopic characterization of magnetic order and fluctuations in EuAl4 and EuGa4, highlighting differences in their magnetic structures and dynamics.
Findings
EuAl4 exhibits complex magnetic structure with strong spin fluctuations.
EuGa4 shows simpler magnetic behavior with decreasing relaxation rate at low temperatures.
Both compounds display significant spin fluctuations near the AFM transition, relevant to topological effects.
Abstract
We report on systematic muon-spin rotation and relaxation (SR) studies of the magnetic properties of EuAl and EuGa single crystals at a microscopic level. Transverse-field SR measurements, spanning a wide temperature range (from 1.5 to 50 K), show clear bulk AFM transitions, with an almost 100% magnetic volume fraction in both cases. Zero-field SR measurements, covering both the AFM and the paramagnetic (PM) states, reveal internal magnetic fields T and 0.89 T in EuAl and EuGa, respectively. The transverse muon-spin relaxation rate , a measure of the internal field distribution at the muon-stopping site, shows a contrasting behavior. In EuGa, it decreases with lowering the temperature, reaching its minimum at zero temperature, s. In EuAl, it increases…
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