Planar XY magnetic glass state in the Gd 2 ScNbO 7 pyrochlore.
Cole MauwsJames BeareMegan RutherfordYixi SuSudarshan SharmaMatthew NugentM K LeeL J ChangSarah DunsigerJason S GardnerGraeme LukeChristopher R WiebePublished in: Journal of physics. Condensed matter : an Institute of Physics journal (2024)
Here a spin glass system with emergent planar ordered spin clusters is investigated. The mixed B-site pyrochlore Gd 2 ScNbO 7 has been synthesized and characterized through a variety of techniques, including x-ray diffraction, magnetic susceptibility, muon spin relaxation, heat capacity and neutron scattering. Despite a Curie-Weiss temperature of -3.93(3) K, indicating net antiferromagnetic interactions, no signs of long ranged magnetic ordering are found down to T = 0.3 K. Instead, a disordered magnetic state emerges with a small correlation length of 2.1(1) Angstroms of single tetrahedra. A RMC analysis of the polarized neutron scattering data reveals short-range antiferromagnetic order with emergent XY spin ordering similar to the parent pyrochlore compounds. Muon spin relaxation, and AC susceptibility measurements confirm that the magnetization condenses into a glass, with 10 % of the potential entropy missing in the specific heat. This magnetic ground state is similar to what is observed in Gd 2 Sn 2 O 7 just above the ordering temperature, without the eventual long-range ordering at low temperature.
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