- By:
- Kapoor, Rachit; Ramirez Diaz, J.; Yahne, Danielle R; Garlea, Vasile O; Hester, Gavin
- Journal Name:
- Physical Review B
- Page Number:
- 224410-224410
- Volume:
- 112
- Issue Number:
- 22
- Publication Date:
- December 31, 2025
- View DOI Listing:
- https://doi.org/10.1103/hr81-bw99
Abstract
Thermodynamic and muon spin relaxation measurements have recently highlighted BiYbGeO5 as a new example of a rare-earth-based quantum dimer magnet with isolated Yb3+ spin-1/2 dimers. However, direct spectroscopic evidence of the triplet excitations and measurements of the structural disorder are lacking. In this work, polycrystalline BiYbGeO5 was synthesized using conventional high-temperature solid-state methods and investigated via high-resolution neutron powder diffraction and inelastic neutron scattering. Diffraction measurements down to 58 mK reveal no signatures of magnetic order and indicate that nearly 20% of Yb3+ sites are replaced by nonmagnetic Bi3+, introducing significant structural disorder. Inelastic neutron scattering shows dispersionless triplon excitations, consistent with localized, noninteracting spin dimers. Fits to the triplet excitation spectrum with an XXZ-type anisotropic exchange give 𝐽XX=0.100(1)meV and 𝐽Z=0.202(1)meV. These findings establish BiYbGeO5 as a structurally disordered but magnetically well-isolated quantum dimer system, providing a model platform for studying the resilience of entangled spin states to site dilution.