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First-principles study of lattice dynamics and thermodynamics ofosmium under pressure
Authors:Liu Bo  Gu Mu  Liu Xiao-Lin  Huang Shi-Ming  Ni Chen  Li Ze-Ren and Wang Rong-Bo
Institution:Shanghai Key Laboratory of Special Artificial Microstructure Materials and Technology, Pohl Institute of Solid State Physics, Tongji University, Shanghai 200092, China; Institute of Fluid Physics, China Academy of Engineering Physics, Mianyang 621900, China
Abstract:We have performed the first-principles linear response calculations of the lattice dynamics, thermal equation of state and thermodynamical properties of hcp Os metal by using the plane-wave pseudopotential method. The thermodynamical properties are deduced from the calculated Helmholtz free energy by taking into account the electronic contribution and lattice vibrational contribution. The phonon frequencies at Gamma point are consistent with experimental values and the dispersion curves at various pressures have been determined. The calculated volume, bulk modulus and their pressure derivatives as a function of temperature are in excellent agreement with the experimental results. The calculated specific heat indicates that the electronic contribution is important not only at very low temperatures but also at high temperatures due to the electronic thermal excitation. The calculated Debye temperature at a very low temperature is in good agreement with experimental values and drops to a constant until 100~K.
Keywords:osmium  lattice dynamics properties  thermodynamics properties
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