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限制地幔过渡带中的成分和温度变化。

Constraining composition and temperature variations in the mantle transition zone.

作者信息

Zhou Wen-Yi, Hao Ming, Zhang Jin S, Chen Bin, Wang Ruijia, Schmandt Brandon

机构信息

Department of Earth and Planetary Sciences, University of New Mexico, Albuquerque, NM, USA.

Institute of Meteoritics, University of New Mexico, Albuquerque, NM, USA.

出版信息

Nat Commun. 2022 Mar 1;13(1):1094. doi: 10.1038/s41467-022-28709-7.

Abstract

The mantle transition zone connects two major layers of Earth's interior that may be compositionally distinct: the upper mantle and the lower mantle. Wadsleyite is a major mineral in the upper mantle transition zone. Here, we measure the single-crystal elastic properties of hydrous Fe-bearing wadsleyite at high pressure-temperature conditions by Brillouin spectroscopy. Our results are then used to model the global distribution of wadsleyite proportion, temperature, and water content in the upper mantle transition zone by integrating mineral physics data with global seismic observations. Our models show that the upper mantle transition zone near subducted slabs is relatively cold, enriched in wadsleyite, and slightly more hydrated compared to regions where plumes are expected. This study provides direct evidence for the thermochemical heterogeneities in the upper mantle transition zone which is important for understanding the material exchange processes between the upper and lower mantle.

摘要

地幔过渡带连接了地球内部两个可能在成分上不同的主要圈层

上地幔和下地幔。瓦兹利石是上地幔过渡带中的一种主要矿物。在这里,我们通过布里渊光谱法测量了含Fe的含水瓦兹利石在高压高温条件下的单晶弹性性质。然后,我们将矿物物理数据与全球地震观测数据相结合,利用我们的结果对上地幔过渡带中瓦兹利石比例、温度和含水量的全球分布进行建模。我们的模型表明,与预计有地幔柱的区域相比,俯冲板块附近的上地幔过渡带相对较冷,富含瓦兹利石,且含水量略高。这项研究为上地幔过渡带的热化学不均匀性提供了直接证据,这对于理解上地幔和下地幔之间的物质交换过程至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cbfc/8888558/7733b25f5b63/41467_2022_28709_Fig1_HTML.jpg

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