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Phonon dispersion throughout the iron spin crossover in ferropericlase

机译:旋转铁旋转交叉在铁铁酸酶中的声子分散

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摘要

Ferropericlase (Fp), (Mg_(1-x)Fe_x)O, is the second most abundant phase in the Earth's lower mantle. At relevant pressure-temperature conditions, iron in Fp undergoes a high spin (HS). S = 2. to low spin (LS), S = 0, state change. The nature of this phenomenon is quite well understood now, but there are still basic questions regarding the structural stability and the existence of soft phonon modes during this iron state change. General theories exist to explain the volume reduction, the significant thermoelastic anomalies, and the broad nature of this HS-LS crossover. These theories make extensive use of the quasiharmonic approximation. Therefore, dynamical and structural stability is essential to their validity. Here, we investigate the vibrational spectrum of Fp throughout this spin crossover using ab initio density-functional theory +U_(sc) calculations. We address vibrational modes associated with isolated and (second-)nearest-neighbor iron ions undergoing the HS-LS state change. As expected, acoustic modes of this solid solution are resilient, while optical modes are the most affected. We show that there are no soft phonon modes across this HS-LS crossover, and Fp is dynamically stable at all relevant pressures.
机译:铁铁纤维酶(FP),(MG_(1-x)FE_X)O,是地球下部地幔中的第二个最丰富的阶段。在相关的压力温度条件下,FP中的铁经过高旋旋(HS)。 S = 2.低旋转(LS),S = 0,状态变化。这种现象的性质现在非常清楚,但在这种铁状态变化过程中,仍然有关于结构稳定性和软校验模式的存在的基本问题。存在通用理论以解释减少体积,显着的热弹性异常以及该HS-LS交叉的广泛性质。这些理论对QuasiHarmonic近似进行了广泛的使用。因此,动态和结构稳定性对其有效性至关重要。在这里,我们使用AB Initio密度功能理论+ U_(SC)计算来研究整个旋转交叉的FP的振动谱。我们地址与正在进行HS-LS状态变化的孤立和(第二)最近邻铁离子相关的振动模式。如预期的那样,这种固溶的声学模式是有弹性的,而光学模式是受影响最大的。我们表明,此HS-LS交叉中没有软校验模式,并且FP在所有相关压力下动态稳定。

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  • 来源
    《Physical review.B.Condensed matter and materials physics》 |2020年第10期|104112.1-104112.8|共8页
  • 作者单位

    Department of Earth and Environmental Sciences Columbia University Lamont-Doherty Earth Observatory Palisades New York 10964 USA;

    Institute of Applied Physics and Computational Mathematics Beijing 100088 China;

    Department of Earth and Environmental Sciences Columbia University Lamont-Doherty Earth Observatory Palisades New York 10964 USA Department of Applied Physics and Applied Mathematics Columbia University New York New York 10027 USA;

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