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Incommensurate Magnetic Ordered Phase with Enhanced Low-Temperature Magnetic Specific Heat in SmAu$_3$Al$_7$

Strongly Correlated Electrons 2026-05-04 v1

Abstract

Neutron scattering and muon spin rotation (μ\muSR) measurements on single-crystal SmAu3_3Al7_7 reveal magnetically ordered states associated with successive transitions at TNT_{\rm N} = 2.8 K and TT^* = 0.9 K. Magnetic Bragg peaks appear below TNT_{\rm N} with an incommensurate (IC) propagation vector q{\bf q} = (0.30, 0, 1.33). μ\muSR detects spontaneous internal fields below TNT_{\rm N}, and the spectral shape is consistent with the IC magnetic ordering. No anomalies are observed at TT^*, indicating that the magnetic structure remains essentially unchanged below and above TT^*. The magnetic order is revealed to be a spatially homogeneous long-range ordered state, rather than a partially disordered state proposed in earlier studies. The possible connection between the IC magnetic order and the enhanced low-temperature magnetic specific heat is discussed.

Keywords

Cite

@article{arxiv.2605.00540,
  title  = {Incommensurate Magnetic Ordered Phase with Enhanced Low-Temperature Magnetic Specific Heat in SmAu$_3$Al$_7$},
  author = {Ryuji Higashinaka and Takuma Iwami and Kohsuke Saitou and Takashi U. Ito and Chihiro Tabata and Koji Kaneko and Takashi Ohhara and Ryoji Kiyanagi and Akiko Nakao and Jumpei G. Nakamura and Wataru Higemoto and Akihiro Koda and Shinsaku Kambe and Yuji Aoki and Tatsuma D. Matsuda},
  journal= {arXiv preprint arXiv:2605.00540},
  year   = {2026}
}

Comments

13 pages, 5 figures