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富铁后钙钛矿与超低速带的起源

Iron-rich post-perovskite and the origin of ultralow-velocity zones.

作者信息

Mao Wendy L, Mao Ho-Kwang, Sturhahn Wolfgang, Zhao Jiyong, Prakapenka Vitali B, Meng Yue, Shu Jinfu, Fei Yingwei, Hemley Russell J

机构信息

Lujan Neutron Scattering Center, Los Alamos National Laboratory, Los Alamos, NM 87545, USA.

出版信息

Science. 2006 Apr 28;312(5773):564-5. doi: 10.1126/science.1123442.

Abstract

The boundary layer between the crystalline silicate lower mantle and the liquid iron core contains regions with ultralow seismic velocities. Such low compressional and shear wave velocities and high Poisson's ratio are also observed experimentally in post-perovskite silicate phase containing up to 40 mol% FeSiO3 endmember. The iron-rich post-perovskite silicate is stable at the pressure-temperature and chemical environment of the core-mantle boundary and can be formed by core-mantle reaction. Mantle dynamics may lead to further accumulation of this material into the ultralow-velocity patches that are observable by seismology.

摘要

晶体硅酸盐下地幔与液态铁核之间的边界层包含地震波速度极低的区域。在含有高达40摩尔%硅酸铁端元的后钙钛矿硅酸盐相中,实验上也观察到了如此低的纵波和横波速度以及高泊松比。富铁的后钙钛矿硅酸盐在核幔边界的压力-温度和化学环境下是稳定的,并且可以通过核幔反应形成。地幔动力学可能导致这种物质进一步聚集到地震学可观测到的超低速斑块中。

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