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Weak three-dimensional coupling of Heisenberg quantum spin chains in SrCuTe$_{2}$O$_{6}$

Strongly Correlated Electrons 2021-10-13 v2 Quantum Physics

Abstract

The magnetic Hamiltonian of the Heisenberg quantum antiferromagnet SrCuTe2_{2}O6_{6} is studied by inelastic neutron scattering technique on powder and single crystalline samples above and below the magnetic transition temperatures at 8 K and 2 K. The high temperature spectra reveal a characteristic diffuse scattering corresponding to a multi-spinon continuum confirming the dominant quantum spin-chain behavior due to the third neighbour interaction Jintra_{intra} = 4.22 meV (49 K). The low temperature spectra exhibits sharper excitations at energies below 1.25 meV which can be explained by considering a combination of weak antiferromagnetic first nearest neighbour interchain coupling J1_1 = 0.17 meV (1.9 K) and even weaker ferromagnetic second nearest neighbour J2_2 = -0.037 meV (-0.4 K) or a weak ferromagnetic J2_2 = -0.11 meV (-1.3 K) and antiferromagnetic J6_6 = 0.16 meV (1.85 K) giving rise to the long-range magnetic order and spin-wave excitations at low energies. These results suggest that SrCuTe2_{2}O6_{6} is a highly one-dimensional Heisenberg system with three mutually perpendicular spin-chains coupled by a weak ferromagnetic J2_2 in addition to the antiferromagnetic J1_1 or J6_6 presenting a contrasting scenario from the highly frustrated hyper-hyperkagome lattice (equally strong antiferromagnetic J1_1 and J2_2) found in the iso-structural PbCuTe2_{2}O6_{6}.

Keywords

Cite

@article{arxiv.2107.05331,
  title  = {Weak three-dimensional coupling of Heisenberg quantum spin chains in SrCuTe$_{2}$O$_{6}$},
  author = {S. Chillal and A. T. M. N. Islam and P. Steffens and R. Bewley and B. Lake},
  journal= {arXiv preprint arXiv:2107.05331},
  year   = {2021}
}

Comments

9 pages, 5+2 figures

R2 v1 2026-06-24T04:05:58.136Z