English

High-pressure Raman spectroscopy and lattice-dynamics calculations on scintillating MgWO4: A comparison with isomorphic compounds

Materials Science 2011-07-04 v1 Accelerator Physics Geophysics

Abstract

Raman scattering measurements and lattice-dynamics calculations have been performed on magnesium tungstate under high pressure up to 41 GPa. Experiments have been carried out under a selection of different pressure-media. The influence of non-hydrostaticity on the structural properties of MgWO4 and isomorphic compounds is examined. Under quasi-hydrostatic conditions a phase transition has been found at 26 GPa in MgWO4. The high-pressure phase has been tentatively assigned to a triclinic structure similar to that of CuWO4. We also report and discuss the Raman symmetries, frequencies, and pressure coefficients in the low- and high-pressure phases. In addition, the Raman frequencies for different wolframites are compared and the variation of the mode frequency with the reduced mass across the family is investigated. Finally, the accuracy of theoretical calculations is systematically discussed for MgWO4, MnWO4, FeWO4, CoWO4, NiWO4, ZnWO4, and CdWO4.

Keywords

Cite

@article{arxiv.1107.0160,
  title  = {High-pressure Raman spectroscopy and lattice-dynamics calculations on scintillating MgWO4: A comparison with isomorphic compounds},
  author = {J. Ruiz-Fuertes and D. Errandonea and S. Lopez-Moreno and J. Gonzalez and O. Gomis and R. Vilaplana and F. J. Manjon and A. Munoz and P. Rodriguez-Hernandez and A. Friedrich and I. A. Tupitsyna and L. L. Nagornaya},
  journal= {arXiv preprint arXiv:1107.0160},
  year   = {2011}
}

Comments

36 pages, 9 figures, 4 tables