Anisotropic Electronic Correlations in the Spin Density Wave State of LaNiO
arXiv:2602.07998
Abstract
The bilayer nickelate superconductor LaNiO undergoes a density wave transition near 150 K that has attracted intensive scrutiny, yet its microscopic origin remains elusive. Here we report polarization-resolved electronic Raman scattering measurements on high-quality single crystals of LaNiO. Below 150\,K, we observe a pronounced, symmetry-dependent redistribution of spectral weight in B and B channels, consistent with the formation of spin-density-wave (SDW) gaps. Quantitative analysis reveals momentum-selective SDW gap amplitudes, with intermediate-to-strong coupling near X/Y points of the Brillouin zone and weaker coupling along the diagonal direction, indicating an unconventional SDW driven by anisotropic electronic correlations. Our results establish the electronic character of the SDW in LaNiO, and provide a microscopic foundation for understanding the emergence of high-temperature superconductivity under pressure in nickelates.
10 pages, 4 figures