Quasi-One-Dimensional Spin Excitations in the Iron Pnictide NaFe 0.53 Cu 0.47 As
Spectroscopic measurements in model 1D correlated systems offer insights for understanding their two-dimensional counterparts, which include the cuprate and iron pnictide/chalcogenide superconductors. A major challenge is the identification of such correlated systems with dominantly 1D physics. Here, in this Letter, inelastic neutron scattering measurements on NaFe 0.53 Cu 0.47 As single crystal directly reveal quasi-1D spin excitations, resulting from atomic order that leads to magnetic Fe and nonmagnetic Cu chains. The dominant exchange interaction is antiferromagnetic along the chain [𝑆𝐽 ∥ ≈ 90.1(3) meV], whereas the inter-chain couplings are much weaker [𝑆𝐽 ⊥ ≈ −2.4(1) meV and 𝑆𝐽 c ≈ 0.15(5) meV]. The quasi-1D spin excitations in NaFe 0.53 Cu 0.47 As stem from both the Néel and stripe vectors, with Néel excitations sensitive to Fe impurities on the Cu site. The spin excitations in quasi-1D NaFe 0.53 Cu 0.47 As and quasi-2D FeSe exhibit a striking resemblance, suggesting a common origin for their coexistent stripe and Néel excitations. Our findings demonstrate magnetic dilution in NaFeAs leads to dimension reduction of its magnetic degree of freedom, presenting a strategy for discovering low-dimensional quantum materials.