English

Refined magnetic structure of VI$_3$

Strongly Correlated Electrons 2022-11-01 v1

Abstract

The van der Waals ferromagnet (FM), VI3_3, was studied by muon spin relaxation (μ+\mu^+SR) and first principle calculations based on density functional theory (DFT). Temperature dependent zero field muon spin relaxation (μ+\mu^+SR) measurements confirm the onset of long range FM order and the time spectra exhibits clear muon spin precession frequencies for T<TC=50.03(1)T<T_{\rm C}=50.03(1)~K. The calculated internal magnetic fields at the predicted muon sites, based on the established magnetic structure from neutron diffraction, is inconsistent with the measured one. This inconsistency is because of strong incoherent neutron scattering and absorption originating from the elements V and I. Instead, a new and a more accurate magnetic structure is derived based on a combined study using μ+\mu^+SR and DFT. These results suggest strong contritions from orbital angular momentum, providing experimental evidence for the existence of unquenched orbital angular momentum of V3+^{3+} in VI3_3. Finally, an unusual form of a short range ordering is present above TCT_{\rm C}. Its temperature dependence is unlike previously reported cases in other layered compounds and its microscopic origin is discussed.

Keywords

Cite

@article{arxiv.2210.17455,
  title  = {Refined magnetic structure of VI$_3$},
  author = {Ola Kenji Forslund and Yuqing Ge and Hiroto Ohta and Chennan Wang and Mahmoud Abdel-Hafiez and Jun Sugiyama and Martin Månsson and Yasmine Sassa},
  journal= {arXiv preprint arXiv:2210.17455},
  year   = {2022}
}

Comments

6 pages, 2 figures

R2 v1 2026-06-28T04:51:56.329Z