首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Absolute Primary Pressure Scale to 120 GPa: Toward a Pressure Benchmark for Earth's Lower Mantle Pressure Benchmark for Earth's Lower Mantle
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Absolute Primary Pressure Scale to 120 GPa: Toward a Pressure Benchmark for Earth's Lower Mantle Pressure Benchmark for Earth's Lower Mantle

机译:绝对初级压力为120 GPA:朝向地球下部地幔的压力基准测试的压力基准

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摘要

Self‐consistent absolute primary pressure scale available to whole Earth's lower mantle pressure regime was established by the simultaneous measurement of densities and acoustic wave velocities of NaCl‐B2 phase up to ~120 GPa without any use of prior pressure standards. While our pressure scale shows excellent agreement with the theoretical predictions, some of the previous secondary pressure scales constructed based on the prior pressure standard by the shock wave data significantly deviate from our primary scale reaching above 12 GPa at most within lower mantle pressure regime, which corresponds to ~120‐km difference in depth. Our newly established pressure scale would thus be a new benchmark to deal with the controversy on the depth of the boundaries of Earth's layered structure, such as magnesium‐silicate postperovskite phase transition boundary at the bottom of the Earth's mantle which might represent the D″ seismic discontinuity.
机译:通过同时测量NaCl-B2相的密度和声波速度,确定全地下壁炉压力系统的自我一致的绝对压力标准,其高达约120gPa的密度和声波速度,而无需使用先前的压力标准。 虽然我们的压力秤与理论预测表现出良好的一致性,但基于冲击波数据的先前压力标准构造的一些先前的二次压力尺度显着偏离了我们最多在较低的地幔压力制度范围内达到12GPa以上的主要规模,这 对应于〜120公里的深度差异。 因此,我们的新建立的压力秤将是一个新的基准,以处理地球层状结构边界深度的争议,例如地球底部底部的镁 - 硅酸盐的硅酸盐渗透率相变边界,这可能代表D“地震 不连续性。

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