Spatially anisotropic S=1 square-lattice antiferromagnet with single-ion anisotropy realized in a Ni(II) pyrazine- n,n′ -dioxide coordination polymer

Publikation: Bidrag til tidsskriftTidsskriftartikelForskningfagfællebedømt

  • Jamie L. Manson
  • Daniel M. Pajerowski
  • Jeffrey M. Donovan
  • Brendan Twamley
  • Paul A. Goddard
  • Roger Johnson
  • Bendix, Jesper
  • John Singleton
  • Tom Lancaster
  • Stephen J. Blundell
  • Jacek Herbrych
  • Peter J. Baker
  • Andrew J. Steele
  • Francis L. Pratt
  • Isabel Franke-Chaudet
  • Ross D. McDonald
  • Alex Plonczak
  • Pascal Manuel

The Ni(NCS)2(pyzdo)2 coordination polymer is found to be an S=1 spatially anisotropic square lattice with easy-axis single-ion anisotropy. This conclusion is based upon considering in concert the experimental probes x-ray diffraction, magnetic susceptibility, magnetic-field-dependent heat capacity, muon-spin relaxation, neutron diffraction, neutron spectroscopy, and pulsed-field magnetization. Long-range antiferromagnetic (AFM) order develops at TN=18.5K. Although the samples are polycrystalline, there is an observable spin-flop transition and saturation of the magnetization at ≈80T. Linear spin-wave theory yields spatially anisotropic exchanges within an AFM square lattice, Jx=0.235meV, Jy=2.014meV, and an easy-axis single-ion anisotropy D=-1.622meV (after renormalization). The anisotropy of the exchanges is supported by density functional theory.

OriginalsprogEngelsk
Artikelnummer094425
TidsskriftPhysical Review B
Vol/bind108
Udgave nummer9
Antal sider19
ISSN2469-9950
DOI
StatusUdgivet - 2023

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© 2023 American Physical Society.

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