This is a page describing data taken during an experiment at the ISIS Neutron and Muon Source. Information about the ISIS Neutron and Muon Source can be found at https://www.isis.stfc.ac.uk.
Investigate phonon excitations in the strong magnetoelastic and magnetoelectric TbPO4
Abstract: TbPO4 exhibits one of the strongest magnetoelectric (ME) coupling among bulk materials. This effect is intimately related to a substantial magnetoelastic coupling, revealed by our preliminary work. The large magnetoelastic effect and structural deformations characterizing the compound play a key role in developing such a strong ME effect. Previous studies suggest that TbPO4 crystal structure can easily distort, giving rise to soft phonon modes behavior. Yet the phonon spectra of TbPO4 remain uninvestigated with neutron spectroscopy and modern DFT methods. Here, we propose to study the phonon spectra on MERLIN, with a special focus on the crossing point of phonon modes with crystal electric field levels. At these points, we expect to see the footprint of the very large magnetoelastic coupling. The result will contribute to understanding the mechanism behind both the magnetoelastic and magnetoelectric effects. We started a DFT calculation and the neutron data are essential to elucidate the phonons dispersion spectrum and deepen the DFT calculations.
Principal Investigator: Dr Rasmus Toft-Petersen
Experimenter: Professor Henrik Ronnow
Experimenter: Dr Paola Caterina Forino
Experimenter: Dr Niels Christensen
Local Contact: Dr Viviane Pecanha Antonio
Experimenter: Ms Anni Chen
DOI: 10.5286/ISIS.E.RB2310184
ISIS Experiment Number: RB2310184
Part DOI | Instrument | Public release date | Download Link |
---|---|---|---|
10.5286/ISIS.E.RB2310184-1 | MERLIN | 18 December 2027 | Download |
Publisher: STFC ISIS Neutron and Muon Source
Data format: RAW/Nexus
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Data Citation
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[author], [date], [title], [publisher],
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For Example:
Dr Rasmus Toft-Petersen et al; (2024): Investigate phonon excitations in the strong magnetoelastic and magnetoelectric TbPO4, STFC ISIS Neutron and Muon Source, https://doi.org/10.5286/ISIS.E.RB2310184
Data is released under the CC-BY-4.0 license.