A first-principles pseudopotential method is used to investigate the structural and elastic properties of ScAs and ScSb in their ambient B1(NaCl) and in high pressure B2 (CsCl) phases and phonon structures at zero and close to phase transition pressure. The calculated lattice constants, static bulk
First-principles study of the high pressure phase transition and lattice dynamics of cerium
โ Scribed by Cui-E Hu; Zhao-Yi Zeng; Lin Zhang; Xiang-Rong Chen; Ling-Cang Cai
- Publisher
- Elsevier Science
- Year
- 2011
- Tongue
- English
- Weight
- 439 KB
- Volume
- 406
- Category
- Article
- ISSN
- 0921-4526
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โฆ Synopsis
We present a first-principles study of the phase transition and lattice dynamics of Ce within the framework of the density functional theory using the GGA +U method. Our calculated results denote that under pressure the transition path is a-Ce (fcc)-a 00 -Ce (monoclinic, with two atoms per unit cell)bct-Ce (body centered tetragonal), and the transition pressures are located at 5.36 and 14.37 GPa, respectively. The equation of state in a wide range of pressure is consistent with the experimental data.
During the g-a phase transition, the magnetic moment disappears gradually, which is mainly due to the strong interaction between the 4f and 5d electrons. By calculating the free energies from phonon dispersions including electronic contribution, the obtained g-a transition temperature at zero pressure is 148 K. From the Blackman diagram of dimensionless elastic constant ratios, we can find that both gand a-Ce show negative Cauchy pressure-C 44 4C 12 .
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