Experimental mineralogy of Super-Earths’ mantles
编号:80 访问权限:仅限参会人 更新:2025-04-03 14:20:30 浏览:3次 口头报告

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摘要
Recent telescope observations increase the number of super-Earths as rocky-type exoplanets and their formation conditions can provide critical connections to the Earth formation although super-Earths are known only limited properties such as average density and size. Based on the density, the mantle mineralogy is proposed to compose of silicates as analogy of the Earth. And the discovery of super-Earths is important to understand the origin of life on Earth because they may have similarities to Earth. The super-Earths’ mantle mineralogy will be modeled primarily by the system MgO-SiO2 and we require to understand the mineralogy in the system at the relevant pressures over 200 GPa [1,2,3]. In this system there are three key mineral components of Mg2SiO4, MgSiO3 and MgSi2O5. Their stability changes as a function of high pressure complicate the phase diagram in the MgO-SiO2 [4]. Recent laser shock techniques enable us to explore properties and structures of minerals in tera Pascual range of pressure relevant to super-Earths’ mantle. The experimental and simulation results on Mg2SiO4 and MgSiO3 play a critical role to understand the mineralogy and geophysics of super-Earths. The results will have significant implications to model the stratification and evolution of super-Earths’ mantle. We will address our preliminary results on structural changes in shock-compressed magnesium silicates using X-ray diffraction techniques.
 
关键词
Super-Earths,,High-pressure dynamic compression, MgO-SiO2
报告人
SekineToshimori
Professor HPSTAR

稿件作者
SekineToshimori HPSTAR
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重要日期
  • 会议日期

    05月12日

    2025

    05月15日

    2025

  • 03月26日 2025

    初稿截稿日期

  • 04月30日 2025

    提前注册日期

  • 05月15日 2025

    注册截止日期

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北京应用物理与计算数学研究所
陕西师范大学
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陕西师范大学
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