A first-principles Hartree-Fock description of MnO at high pressures

1998 ◽  
Vol 77 (4) ◽  
pp. 1063-1075
Author(s):  
W. C. Mackrodt, E.-A. Williamson, D. W
1998 ◽  
Vol 77 (4) ◽  
pp. 1063-1075 ◽  
Author(s):  
W. C. Mackrodt ◽  
E.-A. Williamson ◽  
D. Williams ◽  
N. L. Allan

2018 ◽  
Vol 2018 ◽  
pp. 1-14 ◽  
Author(s):  
Eric Paquet ◽  
Herna L. Viktor

Ab initio molecular dynamics is an irreplaceable technique for the realistic simulation of complex molecular systems and processes from first principles. This paper proposes a comprehensive and self-contained review of ab initio molecular dynamics from a computational perspective and from first principles. Quantum mechanics is presented from a molecular dynamics perspective. Various approximations and formulations are proposed, including the Ehrenfest, Born–Oppenheimer, and Hartree–Fock molecular dynamics. Subsequently, the Kohn–Sham formulation of molecular dynamics is introduced as well as the afferent concept of density functional. As a result, Car–Parrinello molecular dynamics is discussed, together with its extension to isothermal and isobaric processes. Car–Parrinello molecular dynamics is then reformulated in terms of path integrals. Finally, some implementation issues are analysed, namely, the pseudopotential, the orbital functional basis, and hybrid molecular dynamics.


2017 ◽  
Vol 96 (18) ◽  
Author(s):  
Miguel Borinaga ◽  
Unai Aseginolaza ◽  
Ion Errea ◽  
Matteo Calandra ◽  
Francesco Mauri ◽  
...  

2006 ◽  
Vol 69 (8) ◽  
pp. 2365-2441 ◽  
Author(s):  
M J Gillan ◽  
D Alfè ◽  
J Brodholt ◽  
L Vočadlo ◽  
G D Price

Author(s):  
Hao Liu ◽  
Jia Wang ◽  
Guozhao Zhang ◽  
Yonghao Han ◽  
Baojia Wu ◽  
...  

The metallization and dielectric properties of GaP were systematically studied under high pressures up to 30.2 GPa with resistivity measurements, impedance measurements and first-principles calculations. GaP was found to transform...


2009 ◽  
Vol 64 (5-6) ◽  
pp. 399-404 ◽  
Author(s):  
Zi-Jiang Liu ◽  
Xiao-Ming Tan ◽  
Yuan Guo ◽  
Xiao-Ping Zheng ◽  
Wen-Zhao Wu

The thermodynamic properties of tetragonal CaSiO3 perovskite are predicted at high pressures and temperatures using the Debye model for the first time. This model combines the ab initio calculations within local density approximation using pseudopotentials and a plane wave basis in the framework of density functional theory, and it takes into account the phononic effects within the quasi-harmonic approximation. It is found that the calculated equation of state is in excellent agreement with the observed values at ambient condition. Based on the first-principles study and the Debye model, the thermal properties including the Debye temperature, the heat capacity, the thermal expansion and the entropy are obtained in the whole pressure range from 0 to 150 GPa and temperature range from 0 to 2000 K.


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