火星人
地幔对流
地幔(地质学)
行星
天体生物学
地质学
地幔楔
岩石学
岩石圈
火星探测计划
地球物理学
物理
地震学
天体物理学
构造学
作者
Constantinos Charalambous,W. T. Pike,Doyeon Kim,Henri Samuel,Benjamin Fernando,Carys Bill,Philippe Lognonné,W. B. Banerdt
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2025-08-28
卷期号:389 (6763): 899-903
被引量:5
标识
DOI:10.1126/science.adk4292
摘要
A planet's interior is a time capsule, preserving clues to its early history. We report the discovery of kilometer-scale heterogeneities throughout Mars' mantle, detected seismically through pronounced wavefront distortion of energy arriving from deeply probing marsquakes. These heterogeneities, likely remnants of the planet's formation, imply a mantle that has undergone limited mixing driven by sluggish convection. Their size and survival constrain Mars' poorly known mantle rheology, indicating a high viscosity of 1021.3 to 1021.9 pascal-seconds and low temperature dependence, with an effective activation energy of 70 to 90 kilojoules per mole, suggesting a mantle deforming by dislocation creep. The limited mixing, coupled with ubiquitous, scale-invariant heterogeneities, reflects a highly disordered mantle, characteristic of the more primitive interior evolution of a single-plate planet, contrasting sharply with the tectonically active Earth.
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