Ab initio lattice thermal conductivity of (Mg,Fe)O ferropericlase at the Earth's lower mantle pressure and temperature

被引:4
|
作者
Dekura, Haruhiko [1 ]
Tsuchiya, Taku [1 ]
机构
[1] Ehime Univ, Geodynam Res Ctr, 2-5 Bunkyo Cho, Matsuyama, Ehime 7908577, Japan
关键词
lattice thermal conductivity; anharmonic lattice dynamics; high-pressure and high-temperature; deep earth interior; first-principles computation; (Mg; Fe)O ferropericlase; RADIATIVE CONDUCTIVITY; POST-PEROVSKITE; DIFFUSIVITY; BRIDGMANITE; ABSORPTION; MINERALS; DYNAMICS;
D O I
10.1088/1361-648X/acce16
中图分类号
O469 [凝聚态物理学];
学科分类号
070205 ;
摘要
The effects of iron (Fe) incorporation on the lattice thermal conductivity (K-lat) of MgO are investigated under the Earth's lower mantle pressure (P) and temperature (T) condition (P > similar to 20 GPa, T > similar to 2000 K) based on the density-functional theory combined with the anharmonic lattice dynamics theory. The K-lat of ferropericlase (FP) is determined combining the internally consistent LDA + U method and self-consistent approach to solve the phonon Boltzmann transport equation. The calculated.lat are well fitted to the extended Slack model which is proposed in this study to represent.lat in a wide volume and T range. Results demonstrate that the K-lat of MgO decreases strongly by Fe incorporation. This strong negative effect is found due to decreases in phonon group velocity and lifetime. Consequently, the.lat of MgO at the core-mantle boundary condition (P similar to 136 GPa, T similar to 4000 K) is substantially reduced from similar to 40 to similar to 10 W m(-1) K-1 by the incorporation of Fe (12.5 mol%). The effect of Fe incorporation on the.lat of MgO is found to be insensitive to P and T, and at high T, the.lat of FP obeys a well-established T inverse relation unlike the experimental observations.
引用
收藏
页数:10
相关论文
共 50 条
  • [31] Effect of composition, structure, and spin state on the thermal conductivity of the Earth's lower mantle
    Goncharov, A. F.
    Struzhkin, V. V.
    Montoya, J. A.
    Kharlamova, S.
    Kundargi, R.
    Siebert, J.
    Badro, J.
    Antonangeli, D.
    Ryerson, F. J.
    Mao, W.
    PHYSICS OF THE EARTH AND PLANETARY INTERIORS, 2010, 180 (3-4) : 148 - 153
  • [32] Highly conductive iron-rich (Mg,Fe)O magnesiowustite and its stability in the Earth's lower mantle
    Ohta, K.
    Fujino, K.
    Kuwayama, Y.
    Kondo, T.
    Shimizu, K.
    Ohishi, Y.
    JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH, 2014, 119 (06) : 4656 - 4665
  • [33] Temperature and pressure dependence of elastic properties of earth's lower mantle components
    Bedi, SS
    Bhangoo, MS
    MODERN PHYSICS LETTERS B, 1996, 10 (15): : 697 - 703
  • [34] Ab initio calculations of uranium and thorium storage in CaSiO3-perovskite in the Earth's lower mantle
    Perry, Samuel N.
    Pigott, Jeffrey S.
    Panero, Wendy R.
    AMERICAN MINERALOGIST, 2017, 102 (1-2) : 321 - 326
  • [35] Disproportionation of (Mg,Fe)SiO3 perovskite in Earth's deep lower mantle
    Zhang, Li
    Meng, Yue
    Yang, Wenge
    Wang, Lin
    Mao, Wendy L.
    Zeng, Qiao-Shi
    Jeong, Jong Seok
    Wagner, Andrew J.
    Mkhoyan, K. Andre
    Liu, Wenjun
    Xu, Ruqing
    Mao, Ho-kwang
    SCIENCE, 2014, 344 (6186) : 877 - 882
  • [36] Thermal conductivity of Fe-bearing post-perovskite in the Earth's lowermost mantle
    Okuda, Yoshiyuki
    Ohta, Kenji
    Hasegawa, Akira
    Yagi, Takashi
    Hirose, Kei
    Kawaguchi, Saori I.
    Ohishi, Yasuo
    EARTH AND PLANETARY SCIENCE LETTERS, 2020, 547
  • [37] Ab initio lattice thermal conductivity of bulk and thin-film α-AI2O3
    Bonny Dongre
    Jesús Carrete
    Natalio Mingo
    Georg K. H. Madsen
    MRS Communications, 2018, 8 : 1119 - 1123
  • [38] Ab initio lattice thermal conductivity of bulk and thin-film α-Al2O3
    Dongre, Bonny
    Carrete, Jesus
    Mingo, Natalio
    Madsen, Georg K. H.
    MRS COMMUNICATIONS, 2018, 8 (03) : 1119 - 1123
  • [39] Atomistic and Ab initio modeling of CaAl2O4 high-pressure polymorphs under Earth’s mantle conditions
    N. N. Eremin
    A. E. Grechanovsky
    E. I. Marchenko
    Crystallography Reports, 2016, 61 : 432 - 442
  • [40] Atomistic and Ab initio modeling of CaAl2O4 high-pressure polymorphs under Earth's mantle conditions
    Eremin, N. N.
    Grechanovsky, A. E.
    Marchenko, E. I.
    CRYSTALLOGRAPHY REPORTS, 2016, 61 (03) : 432 - 442