Science. 1994 Mar 18;263(5153):1593-6. doi: 10.1126/science.263.5153.1593.
The neodymium isotope and samarium-neodymium systematics of 2.7-billion-year-old mantle-derived magmas indicate that the lifetime of chemical heterogeneities was much shorter in the Archean mantle than in the modern mantle. Isotopic evidence is compatible with a Rayleigh number 100 times larger and convection 10 times faster in the Late Archean compared with the present-day mantle. Modern plate tectonics thus may be an improbable analog for the Archean. Chemical heterogeneities in the mantle may originate upon magma migration and mineralogical phase changes rather than by recycling of oceanic and continental crust.
27 亿年前地幔源岩浆的钕同位素和钐-钕体系表明,太古宙地幔中化学不均一性的存在时间比现代地幔短得多。同位素证据表明,与现代地幔相比,太古宙晚期的瑞利数大 100 倍,对流速度快 10 倍。因此,现代板块构造可能不是太古宙的一个可能的类比。地幔中的化学不均一性可能起源于岩浆运移和矿物相变,而不是通过洋壳和陆壳的再循环。