ISIS Neutron and Muon Source Data Journal

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.


Thermal expansion and magnetostriction in fayalite, Fe2SiO4

Abstract: Olivines - in particular the solid-solution between forsterite (Mg2SiO4) and fayalite (Fe2SiO4) - are important rock-forming minerals on Earth, also occurring in meteorites and interstellar dust. Olivines form the major component of Earth's upper mantle and the point at which their structure becomes unstable with respect to denser minerals marks the upper boundary of the “transition zone” between the upper and lower mantle. The thermal expansion of fayalite (Fe2SiO4) is unusual and not well understood at present. The expansion coefficients of two of the axes of the crystal have a "normal" temperature dependence, tending to zero as T goes to 0 K and becoming almost constant at high T; however, for the other axis the expansion coefficient is roughly constant between about 80 K and 1100 K. The purpose of our experiment is to understand the structural basis of these differences in behaviour

Public release date: 04 June 2024

Principal Investigator: Professor Ian Wood
Experimenter: Mr Andy Jamieson
Experimenter: Professor Andrew Thomson
Local Contact: Dr Dominic Fortes
Experimenter: Miss Eve Tripoliti
Experimenter: Professor David Dobson
Experimenter: Dr Kevin Knight
Experimenter: Professor Lidunka Vocadlo
Experimenter: Dr Oliver Lord

DOI: 10.5286/ISIS.E.RB1910186-3

Parent DOI: 10.5286/ISIS.E.RB1910186

ISIS Experiment Number: RB1910186

Part Number: 3

Date of Experiment: 01 June 2021

Publisher: STFC ISIS Neutron and Muon Source

Data format: RAW/Nexus
Select the data format above to find out more about it.

Data Citation

The recommended format for citing this dataset in a research publication is as:
[author], [date], [title], [publisher], [doi]

For Example:
Professor Ian Wood et al; (2021): Thermal expansion and magnetostriction in fayalite, Fe2SiO4, STFC ISIS Neutron and Muon Source, https://doi.org/10.5286/ISIS.E.RB1910186-3

Data is released under the CC-BY-4.0 license.



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