arXiv · 2504.13188
Three-stage Phase Transitions and Field-induced Phases in CeCoSi:A Landau Theory
Abstract
We investigate both the nonmagnetic and magnetic ordered phases of CeCoSi using Landau theory. Our analysis predicts three successive phase transitions at zero magnetic field. A quadrupole order parameter that emerges below $T_0=12$ K acts as a weak symmetry-breaking field on the antiferromagnetic ordering below $T_{\rm N}=9.4$ K, leading to two-stage magnetic transitions. In the higher-temperature antiferromagnetic phase within the range $T_{\rm s2}=8~{\rm K}<T<T_{\rm N}$, an out-of-plane component of the antiferromagnetic moment may or may not be present. If present, magnetic fields applied along the [100] and [110] directions induce additional magnetic phases.
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Takayuki Ishitobi. 2025-04-01. Three-stage Phase Transitions and Field-induced Phases in CeCoSi:A Landau Theory. https://doi.org/10.7566/jpsj.94.073703
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