English

The self-organized vacancy order in Pr$_9$Ge$_{16}$

Materials Science 2026-07-14 v1 Strongly Correlated Electrons

Abstract

In this work, we report the discovery of a new crystal structure on the Ge-rich side of the Pr-Ge binary phase diagram. Using a high-temperature flux technique, we grew single crystals of Pr9Ge16Pr_9Ge_{16}, which adopt a previously unreported orthorhombic FddFdd2 structure type featuring ordered Ge vacancies. We present the anisotropic magnetic properties and identify the crystallographic bb axis perpendicular to the crystal plane as the magnetic easy axis. Temperature-dependent resistivity measurements reveal metallic behavior with a distinct anomaly at TCT_{\mathrm{C}} = 14.3 K. Hall resistivity data indicate that electron-like carriers dominate, with a carrier concentration on the order of 1027 m310^{27}~\mathrm{m}^{-3}. The magnetic order is readily suppressed by a magnetic field of approximately 0.4 T applied along the easy bb axis.

Keywords

Cite

@article{arxiv.2607.12781,
  title  = {The self-organized vacancy order in Pr$_9$Ge$_{16}$},
  author = {Jayashani S. T. Wickramasinghe and Melissa G. Anderson and Kelci Graville and Gregory T. McCandless and Zachary J. Morgan and Brianna R. Billingsley and Tai Kong and Hyunsoo Kim and Aleksandr V. Chernatyskiy and Simon G. Mitchell and Liang Wu and Julia Y. Chan and Feng Ye and Halyna Hodovanets},
  journal= {arXiv preprint arXiv:2607.12781},
  year   = {2026}
}

Comments

accepted for publication in Phys. Rev. Mater