Brunelli Daniele, Verhoest Léna, Ligi Marco, Hemond Christophe, Maia Marcia, Soltanmohammadi Azam, Lugli Federico, Nonnotte Philippe, Cipriani Anna
Dipartimento di Scienze Chimiche e Geologiche, Università di Modena e Reggio Emilia, Modena, 41125, Italy.
Woods Hole Oceanographic Institution, Woods Hole, 02543-1050 MA, USA.
Sci Adv. 2025 May 2;11(18):eadv4654. doi: 10.1126/sciadv.adv4654. Epub 2025 Apr 30.
Mid-ocean ridges serve as key sites for understanding the composition of the mantle, but extensive melting usually masks its lithological diversity. This study explores how cold mid-ocean ridge segments, such as the eastern Romanche ridge-transform intersection (ERRTI), provide unique insights into mantle heterogeneity. Here, a thick cold lithosphere faces the warm ridge segment efficiently cooling the ridge tip, thus reducing melting and mixing, and allowing distinct short-scale lithologies to be sampled. Our findings reveal a mosaic of mantle components with diverse geochemical and isotopic signatures, reflecting dynamic mantle processes over time. By examining these cold regimes, this research sheds light on the mantle's compositional complexity and its evolution, offering a fresh perspective on lithospheric dynamics and melt generation in settings independent of hotspot influences.
大洋中脊是了解地幔成分的关键区域,但广泛的熔融通常掩盖了其岩性多样性。本研究探讨了寒冷的大洋中脊段,如东罗曼什脊-转换断层交汇处(ERRTI),如何为地幔非均质性提供独特见解。在这里,厚厚的冷岩石圈面对温暖的洋脊段,有效地冷却了洋脊尖端,从而减少了熔融和混合,并使得能够采集到不同的短尺度岩性样本。我们的研究结果揭示了具有不同地球化学和同位素特征的地幔成分拼图,反映了地幔随时间的动态过程。通过研究这些寒冷区域,本研究揭示了地幔的成分复杂性及其演化,为不受热点影响的环境中的岩石圈动力学和熔体生成提供了新的视角。