- Advanced Condensed Matter Physics
- Topological Materials and Phenomena
- Behavioral Health and Interventions
- Quantum, superfluid, helium dynamics
- Physics of Superconductivity and Magnetism
- Cultural Differences and Values
- Psychological and Temporal Perspectives Research
University of Zurich
2022-2024
Abstract Magnetic topological phases of quantum matter are an emerging frontier in physics and materials science, which kagome magnets appear as a highly promising platform. Here, we explore magnetic correlations the recently identified system TbMn 6 Sn using muon spin rotation, combined with local field analysis neutron diffraction. Our studies identify out-of-plane ferrimagnetic structure slow fluctuations exhibit critical slowing down below $${T}_{{{{{{{{\rm{C1}}}}}}}}}^{* }$$ <mml:math...
Magnetic topological phases of quantum matter are an emerging frontier in physics and material science. Along these lines, several kagome magnets have appeared as the most promising platforms. Here, we explore magnetic correlations transition-metal-based magnet TbMn$_{6}$Sn$_{6}$ using muon spin rotation, combined with local field analysis neutron diffraction. Our results show that system exhibits out-of-plane ferrimagnetic structure $P6/mm'm'$ (comprised by Tb Mn moments) slow fluctuations...