首页> 外文期刊>The Journal of Chemical Physics >MONTE CARLO SIMULATIONS OF THE GAMMA-BETA, ALPHA-GAMMA, AND ALPHA-BETA PHASE TRANSITIONS OF NITROGEN
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MONTE CARLO SIMULATIONS OF THE GAMMA-BETA, ALPHA-GAMMA, AND ALPHA-BETA PHASE TRANSITIONS OF NITROGEN

机译:氮的γ-BETA,α-γ和α-BETA相变的蒙特卡罗模拟

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We have performed Monte Carlo simulations in order to determine the gamma-beta, alpha-gamma, and the alpha-beta phase transition lines of nitrogen with a recently developed nitrogen-nitrogen potential, and to examine the driving forces for these transitions. We have shown that it is possible to obtain the alpha-gamma phase transition line by starting, at higher temperature, with the hexagonal representation of the disordered fcc structure. The transition line was found about O.4 GPa higher than the experimental line. The orientational order-disorder behavior of the gamma-beta and the alpha-beta phase transitions could be observed, but the structural changes, fcc-hcp, did not occur, probably due to a potential barrier. It is also possible that the potential model causes the fcc structure to be stable with respect to the hcp structure. The orientational entropy of the various phases has been compared qualitatively by introducing the orientational order parameters. It is suggested that a small difference in translational, entropy, due to a difference in the c/a ratio, stabilizes the hcp structure (beta phase) with respect to the fcc structure at zero pressure. In contrast with previous work, our simulations reveal that not all the layers of the ordered hcp structure at low temperature have the same orientational order. This might be the reason that the ordered fcc structure is stable at low temperature. (C) 1997 American Institute of Physics. [References: 27]
机译:我们进行了蒙特卡洛模拟,以确定具有最近开发的氮-氮势的氮的γ-β,α-γ和α-β相变线,并检查这些转变的驱动力。我们已经表明,通过在较高温度下以无序fcc结构的六边形表示形式开始,可以获得α-γ相变线。发现过渡线比实验线高约O.4 GPa。可以观察到gamma-beta和alpha-beta相变的取向有序-无序行为,但未发生结构变化fcc-hcp,这可能是由于势垒造成的。潜在模型也可能导致fcc结构相对于hcp结构稳定。通过引入取向顺序参数,定性地比较了各相的取向熵。提出由于c / a比的不同而引起的平移熵的微小差异使hcp结构(β相)相对于fcc结构在零压力下稳定。与以前的工作相反,我们的仿真表明,低温下有序hcp结构的所有层并非都具有相同的取向顺序。这可能是有序fcc结构在低温下稳定的原因。 (C)1997美国物理研究所。 [参考:27]

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