DOE OSTI · 2557445
Quantum spin nematic phase in a square-lattice iridate
Abstract
Spin nematic is a magnetic analogue of classical liquid crystals, a fourth state of matter exhibiting characteristics of both liquid and solid. Particularly intriguing is a valence-bond spin nematic, in which spins are quantum entangled to form a multipolar order without breaking time-reversal symmetry, but its unambiguous experimental realization remains elusive. Here, in this study, we establish a spin nematic phase in the square-lattice iridate Sr 2 IrO 4 , which approximately realizes a pseudospin one-half Heisenberg antiferromagnet in the strong spin-orbit coupling limit. Upon cooling, the transition into the spin nematic phase at T C approximate to 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 phase below TN approximate to 230 K and becomes directly observable through its interference with the antiferromagnetic 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 many-body quantum entanglement in the antiferromagnetic state. Taken together, our results reveal a quantum order underlying the Neel antiferromagnet that is widely believed to be intimately connected to the mechanism of high-temperature superconductivity. We establish a spin nematic phase in the square-lattice iridate Sr 2 IrO 4 and find a complete breakdown of coherent magnon excitations at short-wavelength scales, suggesting a many-body quantum entanglement in the antiferromagnetic state.
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Kim, Hoon, Kim, Jin-Kwang, Kwon, Junyoung, Kim, Jimin, Kim, Hyun-Woo J., Ha, Seunghyeok, Kim, Kwangrae, Lee, Wonjun, Kim, Jonghwan, Cho, Gil Young, Heo, Hyeokjun, Jang, Joonho, Sahle, C. J., Longo, A., Strempfer, J., Fabbris, G., Choi, Y., Haskel, D., Kim, Jungho, Kim, J. -W., Kim, B. J.. 2023-12-13. Quantum spin nematic phase in a square-lattice iridate. https://doi.org/10.1038/s41586-023-06829-4
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