论文标题
在俯冲区条件下蜥蜴石的弹性各向异性
Elastic anisotropy of lizardite at subduction zone conditions
论文作者
论文摘要
俯冲带通过平板俯冲将水传输到地球深内部。在大多数俯冲区域中,蛇纹石矿物质是超镁铁矿的主要水合产物。其高温弹性的表征,尤其是其各向异性,将有助于我们更好地估计地幔蛇形化的程度和地球深水周期。在冷俯冲板的P-T条件下(2 GPA时<260°C <260°C),蜥蜴石是蛇纹石的低温多晶岩,其高温弹性仍然未知。在这里,我们报告了在俯冲带P-T条件下蜥蜴石的启动弹性和声波速度。我们的静态结果与以前的研究一致。它的高温速度比以前基于实验的蜥蜴石估计值高得多,而这种蜥蜴人的速度却更接近抗岩石速度。蜥蜴石的弹性各向异性比抗牙岩的弹性大得多,可以更好地说明在某些冷板(例如汤加)中观察到的大剪切波分裂。
Subduction zones transport water into Earth's deep interior through slab subduction. Serpentine minerals, the primary hydration product of ultramafic peridotite, are abundant in most subduction zones. Characterization of their high-temperature elasticity, particularly their anisotropy, will help us better estimate the extent of mantle serpentinization and the Earth's deep water cycle. Lizardite, the low-temperature polymorph of serpentine, is stable under the P-T conditions of cold subduction slabs (< 260°C at 2 GPa), and its high-temperature elasticity remains unknown. Here we report ab initio elasticity and acoustic wave velocities of lizardite at P-T conditions of subduction zones. Our static results agree with previous studies. Its high-temperature velocities are much higher than previous experimental-based lizardite estimates with chrysotile but closer to antigorite velocities. The elastic anisotropy of lizardite is much larger than that of antigorite and could better account for the observed large shear-wave splitting in some cold slabs such as Tonga.