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相关论文: Spin crossover in ferropericlase from first-princi…

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Ferropericlase (fp), (Mg$_{1-x}$Fe$_x$)O, the second most abundant mineral in the Earth's lower mantle, is expected to be an essential component of super-Earths' mantles. Here we present an ab initio investigation of the structure and…

地球物理 · 物理学 2022-05-04 Tianqi Wan , Yang Sun , Renata M. Wentzcovitch

Spin crossover of iron is of central importance in solid Earth geophysics. It impacts all physical properties of minerals that altogether constitute $\sim 95$ vol\% of the Earth's lower mantle: ferropericlase [(Mg,Fe)O] and Fe-bearing…

强关联电子 · 物理学 2015-06-23 Han Hsu , Renata M. Wentzcovitch

Ferropericlase, (Mg,Fe)O is one of the most abundant minerals of the Earth's lower mantle. The high-spin (HS) to low-spin (LS) transition in the Fe2+ ions can dramatically alter the physical and chemical properties of (Mg,Fe)O in the deep…

Ferropericlase (Mg,Fe)O is a major lower mantle mineral, and studying its properties is a fundamental step toward understanding the Earth's interior. Here, we performed a first-principles investigation on the properties of iron as an…

材料科学 · 物理学 2013-04-09 R. Larico , L. V. C. Assali , J. F. Justo

Fe-bearing MgO [(Mg$_{1-x}$Fe$_x$)O] is considered a major constituent of terrestrial exoplanets. Crystallizing in the B1 structure in the Earth's lower mantle, (Mg$_{1-x}$Fe$_x$)O undergoes a high-spin ($S=2$) to low-spin ($S=0$)…

材料科学 · 物理学 2022-05-20 Han Hsu , Koichiro Umemoto

Ferropericlase (Fp), (Mg$_\mathrm{1-x}$Fe$_\mathrm{x}$)O, is the second most abundant phase in the Earths lower mantle. At relevant pressure-temperature conditions, iron in Fp undergoes a high spin (HS), S=2, to low spin (LS), S=0, state…

地球物理 · 物理学 2020-10-28 Michel L. Marcondes , Fawei Zheng , Renata M. Wentzcovitch

The results of magnetic and spectral properties calculation for paramagnetic phase of ferropericlase (Fe$_{1/4}$Mg$_{3/4}$)O at ambient and high pressures are reported. Calculations were performed by combined Local Density Approximation +…

材料科学 · 物理学 2014-11-21 N. A. Skorikov , A. O. Shorikov , S. L. Skornyakov , M. A. Korotin

The spin crossover of iron in Fe$^{3+}$-bearing bridgmanite, the most abundant mineral of the Earth's lower mantle, is by now a well-established phenomenon, though several aspects of this crossover remain unclear. Here we investigate…

材料科学 · 物理学 2016-10-12 Gaurav Shukla , Renata M. Wentzcovitch

Using density functional theory plus Hubbard $U$ calculations, we show that the ground state of (Mg,Fe)(Si,Fe)O$_3$ perovskite, a major mineral phase in the Earth's lower mantle, has high-spin ferric iron ($S=5/2$) at both the dodecahedral…

地球物理 · 物理学 2015-05-27 Han Hsu , Peter Blaha , Matteo Cococcioni , Renata M. Wentzcovitch

The thermoelastic properties of ferropericlase Mg1-xFexO (x = 0.1875) throughout the iron high-to-low spin crossover have been investigated by first principles at Earth's lower mantle conditions. This crossover has important consequences…

材料科学 · 物理学 2013-07-15 R. M. Wentzcovitch , J. F. Justo , Z. Wu , C. R. S. da Silva , D. A. Yuen , D. Kohlstedt

Spin-crossover compounds, which are characterized by magnetic ions showing low-spin and high-spin states at thermally accessible energies, are ubiquitous in nature. We here focus on the effect of an exchange interaction on the collective…

统计力学 · 物理学 2009-11-13 Carsten Timm , Charles J. Pye

The Earth's lower mantle hosts a subtle but pervasive quantum phenomenon: the pressure-induced spin crossover of iron in its dominant minerals, bridgmanite and ferropericlase. In this transition, iron ions gradually shift from high-spin to…

地球物理 · 物理学 2026-03-24 Renata Wentzcovitch , Laura Cobden , Christine Houser , Grace Shephard , Jingyi Zhuang

Iron-bearing oxides undergo a series of pressure-induced electronic, spin and structural transitions that can cause seismic anomalies and dynamic instabilities in Earth's mantle and outer core. We employ x-ray diffraction and x-ray emission…

Spin crossover plays a central role in the structural instability, net magnetic moment modification, metallization, and even in superconductivity in corresponding materials. Most reports on the pressure-induced spin crossover with a large…

The iron spin crossover in ferropericlase introduces anomalies in its thermodynamics and thermoelastic properties. Here we investigate how these anomalies can affect the lower mantle geotherm. The effect is examined in mantle aggregates…

Earth's lower mantle is generally believed to be seismically and chemically homogeneous because most of the key seismic parameters can be explained using a simplified mineralogical model at expected press-temperature conditions. However,…

材料科学 · 物理学 2017-04-06 Shenzhen Xu , Jung-Fu Lin , Dane Morgan

Ferromagnesite (Mg,Fe)CO3, also referred to as magnesiosiderite at high iron concentration, is a solid solution of magnesite (MgCO3) and siderite (FeCO3). Ferromagnesite is believed to enter the Earth's lower mantle via subduction and is…

材料科学 · 物理学 2022-05-20 Han Hsu , Christian P. Crisostomo , Wenzhong Wang , Zhongqing Wu

The discovery of FeO$_{2}$ containing more oxygen than hematite (Fe$_{2}$O$_{3}$) that was previously believed to be the most oxygen rich iron compounds, has important implications on the study of the deep lower mantle compositions.…

强关联电子 · 物理学 2019-07-24 Bo Gyu Jang , Jin Liu , Qingyang Hu , Kristjan Haule , Ho-Kwang Mao , Wendy. L. Mao , Duck Young Kim , Ji Hoon Shim

We perform density functional calculations of the equilibrium 57Fe/54Fe ratios for ferrous iron dissolved in periclase and MgSiO3 perovskite at the pressures and temperatures of the Earth's mantle. Pressure increases the partitioning of…

材料科学 · 物理学 2008-07-31 James R. Rustad , Piotr Zarzycki , Maryali P. Sauceda , Qing-zhu Yin
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