Candy Wrapper for the Earth's Inner Core
暂无分享,去创建一个
R. Ahuja | A. Udías | M. Mattesini | A. B. Belonoshko | H. Tkalčić | E. Buforn | R. Ahuja | H. Tkalčić | A. Belonoshko | A. Udías | E. Buforn | M. Mattesini
[1] P. Roberts,et al. A study of conditions at the inner core boundary of the earth , 1981 .
[2] E. R. Engdahl,et al. Constraints on seismic velocities in the Earth from traveltimes , 1995 .
[3] V. Cormier,et al. Regional variations in the uppermost 100 km of the Earth's inner core , 2004 .
[4] S. Arapan,et al. An ab initio molecular dynamics study of iron phases at high pressure and temperature , 2011, Journal of physics. Condensed matter : an Institute of Physics journal.
[5] An ab initio study of S-substituted iron–nickel–silicon alloy at the Earth's inner core pressure , 2008 .
[6] 御子柴宣夫. B. A. Auld : Acoustic Fields and Waves in Solids, Vol. 1 and 2, John Wiley, New York and London, 1973, 2 vols., 23.5×16cm. , 1974 .
[7] B. Romanowicz,et al. Anisotropy in the inner core: relation between P-velocity and attenuation , 1997 .
[8] B. Auld. Acoustic fields and waves in solids. Vol. 1 , 1990 .
[9] S. Davis,et al. Origin of the Low Rigidity of the Earth's Inner Core , 2007, Science.
[10] L. Margerin,et al. Constraints on grain size and stable iron phases in the uppermost inner core from multiple scattering modeling of seismic velocity and attenuation , 2008, 0803.0264.
[11] L. Margerin,et al. Lopsided Growth of Earth's Inner Core , 2010, Science.
[12] H. Tkalčić. Large variations in travel times of mantle‐sensitive seismic waves from the South Sandwich Islands: Is the Earth's inner core a conglomerate of anisotropic domains? , 2010 .
[13] J. Woodhouse,et al. Regional Variation of Inner Core Anisotropy from Seismic Normal Mode Observations , 2010, Science.
[14] David Gubbins,et al. Melting of the Earth’s inner core , 2011, Nature.
[15] B. Romanowicz,et al. On the origin of complexity in PKP travel time data , 2013 .
[16] R. Deguen. Structure and dynamics of Earth's inner core , 2012 .
[17] J. Tromp. INNER-CORE ANISOTROPY AND ROTATION , 2001 .
[18] T. Alboussière,et al. Melting-induced stratification above the Earth’s inner core due to convective translation , 2010, Nature.
[19] B. Johansson,et al. Body-Centered Cubic Iron-Nickel Alloy in Earth's Core , 2007, Science.
[20] S. Brush. The Earth's Cores , 1981, Nature.
[21] A. J. Abreu,et al. Grain growth and loss of texture during annealing of alloys, and the translation of Earth’s inner core , 2010 .
[22] B. Chalmers. Principles of Solidification , 1964 .
[23] H. Mao,et al. In Situ Studies of Iron under Pressure: New Windows on the Earth's Core , 2001 .
[24] L. Vočadlo,et al. Ab initio calculations of the elasticity of hcp-Fe as a function of temperature at inner-core pressure , 2009 .
[25] R. Ahuja,et al. Stability of the body-centred-cubic phase of iron in the Earth's inner core , 2003, Nature.
[26] D. Leykam,et al. Core structure re-examined using new teleseismic data recorded in Antarctica: evidence for, at most, weak cylindrical seismic anisotropy in the inner core , 2009 .
[27] R. Cohen,et al. High-Pressure Elasticity of Iron and Anisotropy of Earth's Inner Core , 1995, Science.
[28] Domenico Giardini,et al. Evidence for inner core anisotropy from free oscillations , 1986 .
[29] Albrecht W. Hofmann,et al. The chemical composition of the Earth , 1995 .
[30] S. Karato,et al. Inner Core Anisotropy Due to the Magnetic Field—induced Preferred Orientation of Iron , 1993, Science.
[31] R. Ahuja,et al. Molecular dynamics calculation of liquid iron properties and adiabatic temperature gradient in the Earth's outer core , 2007 .
[32] B. Romanowicz,et al. Hemispherical transition of seismic attenuation at the top of the earth's inner core , 2004 .
[33] Jean-Paul Poirier,et al. The age of the inner core , 2001 .
[34] L. Vočadlo. Ab initio calculations of the elasticity of iron and iron alloys at inner core conditions: Evidence for a partially molten inner core? , 2006 .
[35] L. Wen,et al. Hemispherical variations in seismic velocity at the top of the Earth's inner core , 2001, Nature.
[36] Keith D. Koper,et al. Using PKiKP coda to determine inner core structure: 1. Synthesis of coda envelopes using single-scattering theories , 2007 .
[37] B. Johansson,et al. Elastic Anisotropy of Earth's Inner Core , 2008, Science.
[38] A. Ruban,et al. Impact of magnetism on Fe under Earth's core conditions , 2013 .
[39] J. Wookey,et al. Inner-core shear-wave anisotropy and texture from an observation of PKJKP waves , 2008, Nature.
[40] H. Hamaguchi,et al. Degree one heterogeneity and hemispherical variation of anisotropy in the inner core from PKP(BC)–PKP(DF) times , 1997 .
[41] K. N. Dollman,et al. - 1 , 1743 .
[42] H. Mao,et al. Hemispherical anisotropic patterns of the Earth’s inner core , 2010, Proceedings of the National Academy of Sciences.
[43] B. Auld,et al. Acoustic fields and waves in solids , 1973 .
[44] R. Hill. The Elastic Behaviour of a Crystalline Aggregate , 1952 .
[45] K. Creager,et al. Anisotropy of the inner core from differential travel times of the phases PKP and PKIKP , 1992, Nature.
[46] Andrea Morelli,et al. Anisotropy of the inner core inferred from PKIKP travel times , 1986 .
[47] H. Tkalčić,et al. Core structure and heterogeneity: a seismological perspective , 2008 .
[48] B. Romanowicz,et al. Constraints on D″ structure using PKP(AB–DF), PKP(BC–DF) and PcP–P traveltime data from broad-band records , 2002 .
[49] Gauthier Hulot,et al. Detecting thermal boundary control in surface flows from numerical dynamos , 2007 .
[50] V. Cormier,et al. Sharp hemisphere boundaries in a translating inner core , 2013 .
[51] P. Roberts,et al. Structure of the Earth's inner core , 1981, Nature.
[52] M. Bergman. Measurements of electric anisotropy due to solidification texturing and the implications for the Earth's inner core , 1997, Nature.