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Related papers: Lattice dynamics study in PbWO4 under high pressur…

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Room-temperature Raman scattering has been measured in barium tungstate (BaWO4) up to 16 GPa. We report the pressure dependence of all the Raman-active first-order phonons of the tetragonal scheelite phase (BaWO4-I, space group I41/a),…

The effect of pressure on the Raman spectrum of PbWO4 has been investigated up to 48 GPa in a diamond-anvil cell using neon as pressure-transmitting medium. Changes are detected in the Raman spectrum at 6.8 GPa as a consequence of a…

Materials Science · Physics 2016-02-08 D. Errandonea , R. Lacomba-Perales , K. K. Mishra , A. Polian

Room-temperature Raman scattering was measured in ZnWO4 up to 45 GPa. We report the pressure dependence of all the Raman-active phonons of the low-pressure wolframite phase. As pressure increases new Raman peaks appear at 30.6 GPa due to…

Materials Science · Physics 2008-09-02 D. Errandonea , F. J. Manjon , N. Garro , P. Rodriguez-Hernandez , S. Radescu , A. Mujica , A. Munoz , C. Y. Tu

We report the results of both angle-dispersive x-ray diffraction and x-ray absorption near-edge structure studies in BaWO4 and PbWO4 at pressures of up to 56 GPa and 24 GPa, respectively. BaWO4 is found to undergo a pressure-driven phase…

We report a high-pressure study of tetragonal scheelite-type CaMoO4 up to 29 GPa. In order to characterize its high-pressure behavior, we have combined Raman and optical-absorption measurements with density-functional theory calculations.…

Materials Science · Physics 2017-09-29 V. Panchal , N. Garg , H. K. Poswal , D. Errandonea , P. Rodriguez-Hernandez , A. Munoz , E. Cavalli

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…

Lattice dynamics and high pressure phase transitions in AWO4 (A = Ba, Sr, Ca and Pb) have been investigated using inelastic neutron scattering experiments, ab-initio density functional theory calculations and extensive molecular dynamics…

Materials Science · Physics 2015-06-22 Prabhatasree Goel , M. K. Gupta , R. Mittal , S. Rols , S. N. Achary , A. K. Tyagi , S. L. Chaplot

X-ray diffraction and Raman scattering studies on scheelite structured barium molybdate show that, at 5.8 GPa, it undergoes a first order phase transition to fergusonite structure (I2/a, Z=4), asobserved in iso-structural barium…

Materials Science · Physics 2009-11-11 Vinod Panchal , Nandini Garg , Surinder M. Sharma

The multiferroic manganese tungstate (MnWO4) has been studied by high-pressure Raman spectroscopy at room temperature under quasi-hydrostatic conditions up to 39.3 GPa. The low-pressure wolframite phase undergoes a phase transition at 25.7…

Materials Science · Physics 2014-01-28 J. Ruiz-Fuertes , D. Errandonea , O. Gomis , A. Friedrich , F. J. Manjon

The pressure effect on the fluoride scheelite laser host $LiYF_4$ is studied at room temperature up to 26 GPa by Raman scattering and up to 40 GPa by $P^{3+}$ fluorescence of doped sample. The Raman spectra exhibit three singularities at…

Statistical Mechanics · Physics 2007-05-23 Q. A. Wang , A. Bulou , J. Y. Gesland

We report the evolution of charge density wave states under pressure for two NbS3 phases triclinic (phase I) and monoclinic (phase II) at room temperature. Raman and X-ray diffraction (XRD) techniques are applied. The x-ray studies on the…

An investigation of the pressure induced phase transition from the scheelite phase (I41/a, Z=4) to the fergusonite-like phase (I2/a, Z=4)/LaTaO(P21/c, Z=4) of LiYF4 is presented. Employing density functional theory (DFT) within the…

The pressure influence on the lattice vibration of $CaZnF_4$ has been studied by Raman diffusion up to 17 GPa. Most Raman frequencies increase with increasing pressure. Three singularities in the pressure induced frequency evolution are…

Materials Science · Physics 2007-05-23 Q. A. Wang , S. Salaun , A. Bulou

Using in-situ angle dispersive x-ray diffraction, we have shown that barium tungstate, which exists in scheelite phase at ambient conditions, transforms to a new phase about seven giga pascal. Analysis of our data based on Le bail…

Materials Science · Physics 2009-11-10 Vinod Panchal , Nandini Garg , A. K. Chauhan , Sangeeta , Surinder M. Sharma

In this paper we perform a high-pressure study of fergusonite-type HoNbO4. Powder x-ray diffraction experiments and ab initio density-functional theory simulations provide evidence of a phase transition at 18.9(1.1) GPa from the monoclinic…

Materials Science · Physics 2025-08-08 A. B. Garg , D. Errandonea , P. Rodriguez-Hernandez , A. Munoz

Lead vanadate PbVO3 is a polar crystal with a P4mm space group at ambient conditions. It is isostructural with the model soft-mode driven ferroelectric PbTiO3, but differs from it by the so-called 'supertetragonal' elongation of its unit…

Materials Science · Physics 2022-11-30 Pierre Bouvier , Alireza Sasani , Eric Bousquet , Mael Guennou , Joaquim Agostinho Moreira

We study the effects of pressure on the structural, vibrational, and magnetic behavior of cuproscheelite. We performed powder x-ray diffraction and Raman spectroscopy experiments up to 27 GPa as well as ab initio total-energy and…

The optical-absorption edge of single crystals of CaWO4, SrWO4, BaWO4, and PbWO4 has been measured under high pressure up to ~20 GPa at room temperature. From the measurements we have obtained the evolution of the band-gap energy with…

Angle-dispersive x-ray diffraction (ADXRD) and x-ray absorption near edge structure (XANES) measurements have been performed in the AWO4 tungstates CaWO4 and SrWO4 under high pressure up to approximately 20 GPa. Similar phase transitions…

We investigate the crystal structure and lattice vibrations of Sr$_2$IrO$_4$ by a combined phonon Raman scattering and x-ray powder diffraction experiment under pressures up to $66$ GPa and room temperature. Density functional theory (DFT)…

Strongly Correlated Electrons · Physics 2018-09-05 K. Samanta , F. M. Ardito , N. M. Souza-Neto , E. Granado
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