首页> 外文期刊>The Astrophysical Journal. Letters >MANTLE CONVECTION, PLATE TECTONICS, AND VOLCANISM ON HOT EXO-EARTHS
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MANTLE CONVECTION, PLATE TECTONICS, AND VOLCANISM ON HOT EXO-EARTHS

机译:热系外地球的地幔对流,板块构造和火山作用

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Recently discovered exoplanets on close-in orbits should have surface temperatures of hundreds to thousands of Kelvin. They are likely tidally locked and synchronously rotating around their parent stars and, if an atmosphere is absent, have surface temperature contrasts of many hundreds to thousands of Kelvin between permanent day and night sides. We investigated the effect of elevated surface temperature and strong surface temperature contrasts for Earth-mass planets on the (1) pattern of mantle convection, (2) tectonic regime, and (3) rate and distribution of partial melting, using numerical simulations of mantle convection with a composite viscous/pseudo-plastic rheology. Our simulations indicate that if a close-in rocky exoplanet lacks an atmosphere to redistribute heat, a -400 K surface temperature contrast can maintain an asymmetric degree 1 pattern of mantle convection in which the surface of the planet moves preferentially toward subduction zones on the cold night side. The planetary surface features a hemispheric dichotomy, with plate-like tectonics on the night side and a continuously evolving mobile lid on the day side with diffuse surface deformation and vigorous volcanism. If volcanic outgassing establishes an atmosphere and redistributes heat, plate tectonics is globally replaced by diffuse surface deformation and volcanism accelerates and becomes distributed more uniformly across the planetary surface.
机译:最近在近距离轨道上发现的系外行星应该具有数百到数千开尔文的表面温度。它们可能会被潮汐锁定并围绕其母恒星同步旋转,并且如果没有大气层,则白天和黑夜之间的表面温度差异会达到数百至数千开尔文。我们使用地幔的数值模拟研究了地球质量行星升高的表面温度和强烈的表面温度对比对(1)地幔对流模式,(2)构造状态以及(3)部分融化的速率和分布的影响对流,具有粘性/伪塑性复合流变学特性。我们的模拟表明,如果近距离的岩石系外行星缺乏重新分配热量的大气层,那么-400 K的表面温度对比可以维持不对称的1级对流模式,在该模式中,行星表面优先向着寒冷的俯冲带移动夜边。行星表面具有半球二分法,在夜晚具有板状构造,在白天具有不断演化的活动盖,具有分散的表面变形和剧烈的火山作用。如果火山喷发形成大气层并重新分配热量,则板块构造将被地表扩散形变整体取代,火山作用将加速并变得更加均匀地分布在整个行星表面上。

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