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Structural,thermodynamic, electronic,and optical properties of NaH from first-principles calculations
Authors:Xiao-Wei Sun  Ling-Cang Cai  Qi-Feng Chen  Xiang-Rong Chen  Fu-Qian Jing
Affiliation:1. National Key Laboratory of Shock Wave and Detonation Physics, Institute of Fluid Physics, China Academy of Engineering Physics, Mianyang 621900, PR China;2. Institute of Atomic and Molecular Physics, School of Physical Science and Technology, Sichuan University, Chengdu 610065, PR China;3. School of Mathematics and Physics, Lanzhou Jiaotong University, Lanzhou 730070, PR China;4. International Centre for Materials Physics, Chinese Academy of Sciences, Shenyang 110016, PR China
Abstract:The structural stability, thermodynamic, electronic, and optical properties of NaH with rock salt (B1) structure and cesium chloride (B2) structure under high pressure are investigated by first-principles calculations using norm-conserving pseudopotential applying a generalized gradient approximation (GGA) for exchange and correlation. Through the analysis of energy–volume variation, we find the phase transition of NaH from B1 to B2 structure occurs at 32.3 GPa, which in good agreement with the diamond-anvil-cell high-pressure experimental value of 29.3 ± 0.9 GPa Phys. Rev. B 36 (1987) 7664]. By using the quasi-harmonic Debye model, the thermodynamic properties including the Debye temperature ΘD, heat capacity CV, thermal expansion coefficient α, and Grüneisen parameter γ are successfully obtained in the temperature range from 0 to 700 K and pressure ranges from 0 to 32 GPa and 33 to 100 GPa for NaH B1 and B2 phases, respectively. Analysis of band structures suggests that the NaH has an indirect band gap that the valence band maximum is at the W point and the conduction minimum locates at L point. The calculated energy gaps is very close to that value obtained in recent full potential augmented plane wave calculations. The optical properties including dielectric function ?(ω), absorption coefficient α(ω), reflectivity coefficient R(ω), and refractive index n(ω) are also calculated and analyzed.
Keywords:C  Ab initio calculations  D  Thermodynamic properties  D  Band structure  D  Optical properties
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