English

Quantum spin nematic phase in a square-lattice iridate

Strongly Correlated Electrons 2023-12-15 v2

Abstract

Spin nematic (SN) is a magnetic analog of classical liquid crystals, a fourth state of matter exhibiting characteristics of both liquid and solid. Particularly intriguing is a valence-bond SN, in which spins are quantum entangled to form a multi-polar order without breaking time-reversal symmetry, but its unambiguous experimental realization remains elusive. Here, we establish a SN phase in the square-lattice iridate Sr2_2IrO4_4, which approximately realizes a pseudospin one-half Heisenberg antiferromagnet (AF) in the strong spin-orbit coupling limit. Upon cooling, the transition into the SN phase at TC_C \approx 263 K is marked by a divergence in the static spin quadrupole susceptibility extracted from our Raman spectra, and concomitant emergence of a collective mode associated with the spontaneous breaking of rotational symmetries. The quadrupolar order persists in the antiferromagnetic (AF) phase below TN_N \approx 230 K, and becomes directly observable through its interference with the AF order in resonant x-ray diffraction, which allows us to uniquely determine its spatial structure. Further, we find using resonant inelastic x-ray scattering a complete breakdown of coherent magnon excitations at short-wavelength scales, suggesting a resonating-valence-bond-like quantum entanglement in the AF state. Taken together, our results reveal a quantum order underlying the N\'eel AF that is widely believed to be intimately connected to the mechanism of high temperature superconductivity (HTSC).

Keywords

Cite

@article{arxiv.2310.00886,
  title  = {Quantum spin nematic phase in a square-lattice iridate},
  author = {Hoon Kim and Jin-Kwang Kim and Jimin Kim and Hyun-Woo J. Kim and Seunghyeok Ha and Kwangrae Kim and Wonjun Lee and Jonghwan Kim and Gil Young Cho and Hyeokjun Heo and Joonho Jang and J. Strempfer and G. Fabbris and Y. Choi and D. Haskel and Jungho Kim and J. -W. Kim and B. J. Kim},
  journal= {arXiv preprint arXiv:2310.00886},
  year   = {2023}
}

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Published in https://www.nature.com/articles/s41586-023-06829-4

R2 v1 2026-06-28T12:37:50.629Z