English

Competing collinear and non-collinear spin textures imaged by spatially-resolved REXS in Eu(Al0.4Ga0.6)4

Strongly Correlated Electrons 2026-08-11 v1

Abstract

Here, we use resonant elastic x-ray scattering (REXS) to investigate the inhomogeneity of the zero-field magnetic spin texture of Eu(Al0.4_{0.4}Ga0.6_{0.6})4_4. By using spatially-resolved REXS, we show that the two magnetic transitions at TN1_{N1} = 17 K and TN2_{N2} = 14 K originate from two nearly degenerate, yet distinct, orthogonal pairs of q-vectors. The corresponding phases are segregated spatially, such that one fraction of the sample comprises coexisting orthogonal spin-density-wave domains, while another fraction hosts coexisting orthogonal helical domains. Additionally, the helical state forms inversion domains indicating that the inversion symmetry is not broken prior the magnetic transition. Our results suggest that the magnetic state is single-q and revealed a large variation of spin textures across a 0.8 - 1 mm area of the sample surface. These results demonstrate clear differences between the locally and globally probed magnetic textures, typically assumed to be representative of the system as a whole, highlighting the importance of spatially-resolved probes for accurately describing the magnetic behavior of this class of materials.

Keywords

Cite

@article{arxiv.2608.11070,
  title  = {Competing collinear and non-collinear spin textures imaged by spatially-resolved REXS in Eu(Al0.4Ga0.6)4},
  author = {Fellipe B. Carneiro and Zéetény Bacsó and Kevin Allen and Aly H. Abdeldaim and Rebecca Scatena and Jaime M. Moya and Roger D. Johnson and Emilia Morosan and Alessandro Bombardi},
  journal= {arXiv preprint arXiv:2608.11070},
  year   = {2026}
}

Comments

7 pages 5 figures