The crystal structure of the high-pressure distorted fcc phase, which is so far the last in the sequence of crystal structures for the trivalent rare-earth metals, is assigned the trigonal space group P3121(D34) or P3221(D36) with Z=6. In this space group the distortion of the fcc lattice occurs continuously and is consistent with the second-order nature of this phase transition. The observed intensity ratios of reflections for the distorted fcc phase of Y, La, and Pr are satisfactorily explained. This structure can be described by the softening of a zone-boundary longitudinal phonon mode accompanied by the shearing of the hexagonal layers in the basal plane
The results of electrical resistance (R), thermoelectric power (TEP) and X-ray diffraction measureme...
Samarium undergoes a pressure induced phase transformation to double-hexagonal close-packed (La-type...
The electronic structures of the earlier lanthanide and actinide elements are considered, and especi...
The paper describes distorted lattices that can be derived from the face-centred cubic Bravais latti...
International audiencePressure-induced structural phase transformations in rare-earth metals Ce and ...
A unifying theoretical description is given of the phase transition mechanisms occurring in lanthani...
The fusion behavior and solid-solid transformations in the rare-earth metals have been investigated ...
Angle-dispersive x-ray powder diffraction experiments were performed onsamarium metal up to 50 GPa. ...
The structural phase transitions of yttrium under high pressure up to 300 GPa have been studied by u...
Praseodymium was investigated by Raman spectroscopy under pressure. A negative pressure shift of the...
The displacive transition in La is studied in the pressure range up to 26 GPa and under temperatures...
Angle-dispersive x-ray powder diffraction experiments have been performed on yttrium metal up to 183...
The phase diagram for praseodymium under pressures up to 23 GPa and temperatures up to 573 K is stud...
Structural phase transitions in the rare-earth metal Dysprosium have been studied in a Diamond Anvil...
The high-pressure behaviour of the lanthanide series of metals has been the subject of study since ...
The results of electrical resistance (R), thermoelectric power (TEP) and X-ray diffraction measureme...
Samarium undergoes a pressure induced phase transformation to double-hexagonal close-packed (La-type...
The electronic structures of the earlier lanthanide and actinide elements are considered, and especi...
The paper describes distorted lattices that can be derived from the face-centred cubic Bravais latti...
International audiencePressure-induced structural phase transformations in rare-earth metals Ce and ...
A unifying theoretical description is given of the phase transition mechanisms occurring in lanthani...
The fusion behavior and solid-solid transformations in the rare-earth metals have been investigated ...
Angle-dispersive x-ray powder diffraction experiments were performed onsamarium metal up to 50 GPa. ...
The structural phase transitions of yttrium under high pressure up to 300 GPa have been studied by u...
Praseodymium was investigated by Raman spectroscopy under pressure. A negative pressure shift of the...
The displacive transition in La is studied in the pressure range up to 26 GPa and under temperatures...
Angle-dispersive x-ray powder diffraction experiments have been performed on yttrium metal up to 183...
The phase diagram for praseodymium under pressures up to 23 GPa and temperatures up to 573 K is stud...
Structural phase transitions in the rare-earth metal Dysprosium have been studied in a Diamond Anvil...
The high-pressure behaviour of the lanthanide series of metals has been the subject of study since ...
The results of electrical resistance (R), thermoelectric power (TEP) and X-ray diffraction measureme...
Samarium undergoes a pressure induced phase transformation to double-hexagonal close-packed (La-type...
The electronic structures of the earlier lanthanide and actinide elements are considered, and especi...