English

Probing magnetic order and disorder in the one-dimensional molecular spin chains CuF2(pyz) and [Ln(hfac)3(boaDTDA)]n (Ln=Sm, La) using implanted muons

Strongly Correlated Electrons 2019-09-04 v1

Abstract

We present the results of muon-spin relaxation (μ+\mu^{+}SR) measurements on antiferromagnetic and ferromagnetic spin chains. In antiferromagnetic CuF2_{2}(pyz) we identify a transition to long range magnetic order taking place at TN=0.6(1)T_{\mathrm{N}} = 0.6(1) K, allowing us to estimate a ratio with the intrachain exchange of TN/J0.1T_{\mathrm{N}}/|J| \approx 0.1 and the ratio of interchain to intrachain exchange coupling as J/J0.05|J'/J| \approx 0.05. The ferromagnetic chain [Sm(hfac)3_{3}(boaDTDA)]n_{n} undergoes an ordering transition at Tc=2.8(1)T_{\mathrm{c}}=2.8(1) K, seen via a broad freezing of dynamic fluctuations on the muon (microsecond) timescale and implying Tc/J0.6T_{\mathrm{c}}/|J| \approx 0.6. The ordered radical moment continues to fluctuate on this timescale down to 0.3 K, while the Sm moments remain disordered. In contrast, the radical spins in [La(hfac)3_{3}(boaDTDA)]n_{n} remain magnetically disordered down to T=0.1T=0.1 K suggesting Tc/J<0.17T_{\mathrm{c}}/|J| < 0.17.

Keywords

Cite

@article{arxiv.1905.04913,
  title  = {Probing magnetic order and disorder in the one-dimensional molecular spin chains CuF2(pyz) and [Ln(hfac)3(boaDTDA)]n (Ln=Sm, La) using implanted muons},
  author = {T. Lancaster and B. M. Huddart and R. C. Williams and F. Xiao and K. J. A. Franke and P. J. Baker and F. L. Pratt and S. J. Blundell and J. A. Schlueter and M. B. Mills and A. C. Maahs and K. E. Preuss},
  journal= {arXiv preprint arXiv:1905.04913},
  year   = {2019}
}

Comments

13 pages, 5 figures