English

Experimental Evidence for Non-spherical Magnetic Form Factor in Ru$^{3+}$

Strongly Correlated Electrons 2023-11-02 v1

Abstract

The Mott insulator α\alpha-RuCl3_3 has generated great interest in the community due to its possible field-induced Kitaev quantum spin liquid state. Despite enormous effort spent trying to obtain the form of the low energy Hamiltonian, there is currently no agreed upon set of parameters which is able to explain all of the data. A key piece of missing information lies in the determination of the magnetic form factor of Ru3+^{3+}, particularly for a true quantitative treatment of inelastic neutron scattering data. Here we present the experimentally derived magnetic form factor of Ru3+^{3+} in the low spin 4d5d^5 state using polarized neutron diffraction within the paramagnetic regime on high quality single crystals of α\alpha-RuCl3_3. We observe strong evidence of an anisotropic form factor, expected of the spin-orbit coupled jeff=12j_{\textrm{eff}} = \frac{1}{2} ground state. We model the static magnetization density in increasing complexity from simple isotropic cases, to a multipolar expansion, and finally \emph{ab initio} calculations of the generalized jeff=12j_{\textrm{eff}} = \frac{1}{2} ground state. Comparison of both single ion models and inclusion of Cl^- anions support the presence of hybridization of Ru3+^{3+} with the surrounding Cl^{-} ligands.

Keywords

Cite

@article{arxiv.2311.00078,
  title  = {Experimental Evidence for Non-spherical Magnetic Form Factor in Ru$^{3+}$},
  author = {Colin L. Sarkis and John W. Villanova and Casey Eichstaedt and Adolfo G. Eguiluz and Jaime A. Fernandez-Baca and Masaaki Matsuda and Jiaqiang Yan and Christian Balz and Arnab Banerjee and D. Alan Tennant and Tom Berlijn and Stephen E. Nagler},
  journal= {arXiv preprint arXiv:2311.00078},
  year   = {2023}
}