Influence of controlled disorder on the dipolar spin ice state of Ho-based pyrochlores
arXiv:2601.02555 · doi:10.1103/pvl4-vxzx
Abstract
Pyrochlore magnets of the form O, in which rare-earth ions on the -site form a three-dimensional network of corner-sharing tetrahedra, provide a canonical setting for geometrical frustration. Ho-based pyrochlores host a dipolar spin-ice ground state, characterized by Ising moments constrained by the ice rules and elementary excitations analogous to magnetic monopoles. Here we examine how controlled chemical disorder influences this state by introducing site mixing on the non-magnetic -site in two compounds. HoGaSbO contains only Ga/Sb charge disorder, whereas HoScSbO exhibits both charge and substantial size disorder arising from the large ionic-radius mismatch between Sc and Sb. Although both materials retain the pyrochlore structure, neutron scattering measurements reveal a reduced correlation length for the -site cation ordering and enhanced local structural distortions in HoScSbO. Despite these structural differences, bulk thermodynamic measurements and magnetic diffuse scattering demonstrate that both systems exhibit the defining signatures of a dipolar spin-ice state. Low-energy inelastic neutron spectroscopy further uncovers broad magnetic excitations that develop within the dipolar spin-ice regime, a feature absent in pristine Ho pyrochlores and indicative of disorder-induced splitting of the non-Kramers ground-state doublet. Together, these results show that controlled disorder generates tunable transverse-field-driven quantum fluctuations in Ho-based pyrochlores, although the dipolar spin-ice state is remarkably robust to this disorder.
15 pages, 6 figures
References in corpus (17)
- Quantum Spin Ice Dynamics in the Dipole-Octupole Pyrochlore Magnet CeZrO
- Disordered Route to the Coulomb Quantum Spin Liquid: Random Transverse Fields on Spin Ice in PrZrO
- The case for a U(1) Quantum Spin Liquid Ground State in the Dipole-Octupole Pyrochlore CeZrO
- Antiferro-quadrupolar correlations in the quantum spin ice candidate Pr2Zr2O7
- Sleuthing out exotic quantum spin liquidity in the pyrochlore magnet CeZrO
- Synthesis, floating zone crystal growth and characterization of the Quantum Spin Ice pyrochlore
- Physical properties of a candidate quantum spin-ice system Pr2Hf2O7
- Structural Disorder and Properties of the Stuffed Pyrochlore Ho2TiO5
- Dirac's "magnetic monopole" in pyrochlore ice U(1) spin liquids: Spectrum and classification
- Evidence for the Confinement of Magnetic Monopoles in Quantum Spin Ice
- Absence of moment fragmentation in the mixed -site pyrochlore NdGaSbO
- Emergent photons and fractionalized excitations in a quantum spin liquid
- Traversing the pyrochlore stability diagram; microwave-assisted synthesis and discovery of mixed B-site LnInSbO family
- Revisiting spin ice physics in the ferromagnetic Ising pyrochlore PrSnO
- Single Crystal Diffuse Neutron Scattering Study of the Dipole-Octupole Quantum Spin Ice Candidate CeZrO: No Apparent Octupolar Correlations Above K
- Inelastic neutron scattering on Ce pyrochlores: Signatures of electric monopoles
- Quantum Spin Liquids Stabilized by Disorder in Non-Kramers Pyrochlores