MECHANISM OF THE GAMMA-BETA-PHASE TRANSFORMATION OF MG2SIO4 AT HIGH-TEMPERATURE AND PRESSURE

被引:37
|
作者
RUBIE, DC
BREARLEY, AJ
机构
[1] UNIV NEW MEXICO,DEPT GEOL,ALBUQUERQUE,NM 87131
[2] UNIV NEW MEXICO,INST METEORIT,ALBUQUERQUE,NM 87131
关键词
D O I
10.1038/348628a0
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
THE transformation of Mg1.8Fe0.2SiO4 olivine first to the β-phase (modified spinel) and then to the γ-spinel phase occurs with increasing depth in the Earth's mantle as a result of the increasing pressure1,2. The mechanisms of these two transformations have an important influence on mantle rheology and may also be related to the origin of deep-focus earthquakes3-8. We report here the results of experiments on the phase transformation of Mg2SiO4 olivine at 15 GPa pressure in a multi-anvil cell. At this pressure and a temperature of 900°C, early formed metastable γ-spinel transforms partially to the β-phase. The observed microstructures, which are similar to those in shocked meteorites9-11, show that the γ-to-β transformation can occur either by diffusion-controlled growth or by a martensitic (shearing) mechanism, depending on how far the pressure-temperature conditions deviate from their values at phase equilibrium. Our results suggest that the diffusion-controlled mechanism is most likely to operate at the β/γ phase boundary in the mantle, but a martensitic β-to-γ transformation might occur in subduction zones and could reduce the shear strength of the subducting slab © 1990 Nature Publishing Group.
引用
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页码:628 / 631
页数:4
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