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首页> 外文期刊>The Journal of Chemical Physics >Laser-driven shock experiments on precompressed water: Implications for 'icy' giant planets
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Laser-driven shock experiments on precompressed water: Implications for 'icy' giant planets

机译:激光驱动的预压缩水冲击实验:对“冰冷”巨型行星的影响

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摘要

Laser-driven shock compression of samples precompressed to 1 GPa produces high-pressure-temperature conditions inducing two significant changes in the optical properties of water: the onset of opacity followed by enhanced reflectivity in the initially transparent water. The onset of reflectivity at infrared wavelengths can be interpreted as a semiconductor <-> electronic conductor transition in water, and is found at pressures above similar to 130 GPa for single-shocked samples precompressed to 1 GPa. Our results indicate that conductivity in the deep interior of "icy" giant planets is greater than realized previously because of an additional contribution from electrons.
机译:激光驱动的预压缩至1 GPa样品的冲击压缩会产生高压温度条件,从而导致水的光学特性发生两个重大变化:不透明性的开始,随后是初始透明水中反射率的提高。红外波长处反射率的开始可解释为水中的半导体电子导体跃迁,对于预压缩至1 GPa的单冲击样品,发现其压力高于130 GPa。我们的结果表明,由于电子的额外贡献,“冰冷”巨型行星深部内部的电导率比以前更高。

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