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A test for Io's magma ocean: Modeling tidal dissipation with a partially molten mantle

机译:对木卫一岩浆海洋的测试:用部分熔融的地幔模拟潮汐消散

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abstract_textpMagnetic induction measurements and astrometry provide constraints on the internal structure of Io, a volcanically active moon of Jupiter. We model the tidal response of a partially molten Io using an Andrade rheology which is supported by silicate deformation experiments. This model uses material properties similar to the Earth's mantle and includes feedbacks between partial melting, tidal heat production, and melt transport. We are able to satisfy constraints provided by the measured imaginary part of the tidal Love number Im(k(2)), the inferred depth and melt fraction of a near-surface partially molten layer, and the observed equatorial concentration of volcanic landforms. We predict a value for the real part of the tidal Love number of Re(k(2)) = 0.09 +/- 0.02, much smaller than the value of Re(k(2)) approximate to 0.5 predicted for an Io with a fluid magma ocean. Future spacecraft observations should be able to measure this value and test which model is correct./p/abstract_text
机译:磁感应测量和天体测量对木星火山活跃的卫星木卫一的内部结构提供了限制。我们使用安德拉德流变学对部分熔融的 Io 的潮汐响应进行建模,该流变学得到了硅酸盐变形实验的支持。该模型使用类似于地幔的材料属性,包括部分熔化、潮汐热产生和熔体传输之间的反馈。我们能够满足潮汐爱数Im(k(2)的测量虚部)、近地表部分熔融层的推断深度和熔体分数以及观测到的火山地貌赤道浓度提供的约束条件。我们预测潮汐爱情数的实部值 Re(k(2)) = 0.09 +/- 0.02,远小于 Re(k(2)) 的值,近似于 0.5 预测的具有流体岩浆海洋的 Io。未来的航天器观测应该能够测量这个值,并测试哪个模型是正确的。

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