Escrig S, Capmas F, Dupré B, Allègre C J
Laboratoire de Géochimie et Cosmochimie, UMR 7579 CNRS, Institut de Physique du Globe de Paris, Université Denis Diderot (Paris 7), France.
Nature. 2004 Sep 2;431(7004):59-63. doi: 10.1038/nature02904.
The isotopic compositions of mid-ocean-ridge basalts (MORB) from the Indian Ocean have led to the identification of a large-scale isotopic anomaly relative to Pacific and Atlantic ocean MORB. Constraining the origin of this so-called DUPAL anomaly may lead to a better understanding of the genesis of upper-mantle heterogeneity. Previous isotopic studies have proposed recycling of ancient subcontinental lithospheric mantle or sediments with oceanic crust to be responsible for the DUPAL signature. Here we report Os, Pb, Sr and Nd isotopic compositions of Indian MORB from the Central Indian ridge, the Rodriguez triple junction and the South West Indian ridge. All measured samples have higher (187)Os/(188)Os ratios than the depleted upper-mantle value and Pb, Sr and Nd isotopic compositions that imply the involvement of at least two distinct enriched components in the Indian upper-mantle. Using isotopic and geodynamical arguments, we reject both subcontinental lithospheric mantle and recycled sediments with oceanic crust as the cause of the DUPAL anomaly. Instead, we argue that delamination of lower continental crust may explain the DUPAL isotopic signature of Indian MORB.
印度洋中洋脊玄武岩(MORB)的同位素组成已导致识别出相对于太平洋和大西洋中洋脊玄武岩的大规模同位素异常。限制这种所谓的杜帕尔异常的起源可能有助于更好地理解上地幔不均一性的成因。先前的同位素研究提出,古老的次大陆岩石圈地幔或沉积物与洋壳的再循环是造成杜帕尔特征的原因。在此,我们报告了来自中印度洋海岭、罗德里格斯三联点和西南印度洋海岭的印度中洋脊玄武岩的锇、铅、锶和钕同位素组成。所有测量样本的(187)Os/(188)Os比值均高于亏损上地幔值,其铅、锶和钕同位素组成表明印度上地幔中至少涉及两种不同的富集组分。利用同位素和地球动力学论据,我们排除了次大陆岩石圈地幔和与洋壳再循环的沉积物作为杜帕尔异常成因的可能性。相反,我们认为下地壳的拆沉作用可能解释了印度中洋脊玄武岩的杜帕尔同位素特征。