首页> 外文期刊>The Astrophysical journal >USING SCHUMANN RESONANCE MEASUREMENTS FOR CONSTRAINING THE WATER ABUNDANCE ON THE GIANT PLANETS—IMPLICATIONS FOR THE SOLAR SYSTEM'S FORMATION
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USING SCHUMANN RESONANCE MEASUREMENTS FOR CONSTRAINING THE WATER ABUNDANCE ON THE GIANT PLANETS—IMPLICATIONS FOR THE SOLAR SYSTEM'S FORMATION

机译:使用舒曼共振测量法来控制巨型行星上的水丰度—对太阳系形成的启示

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摘要

The formation and evolution of the solar system is closely related to the abundance of volatiles, namely water, ammonia, and methane in the protoplanetary disk. Accurate measurement of volatiles in the solar system is therefore important for understanding not only the nebular hypothesis and origin of life but also planetary cosmogony as a whole. In this work, we propose a new remote sensing technique to infer the outer planets' water content by measuring Tremendously and Extremely Low Frequency (TLF-ELF) electromagnetic wave characteristics (Schumann resonances) excited by lightning in their gaseous envelopes. Schumann resonance detection can be potentially used for constraining the uncertainty of volatiles of the giant planets, mainly Uranus and Neptune, because such TLF-ELF wave signatures are closely related to the electric conductivity profile and water content.
机译:太阳系的形成和演化与原行星盘中的大量挥发物(即水,氨和甲烷)密切相关。因此,准确测量太阳系中的挥发物不仅对于理解星云假说和生命起源,而且对于整个行星宇宙都是重要的。在这项工作中,我们提出了一种新的遥感技术,通过测量闪电在气态包壳中激发的巨大和极低频(TLF-ELF)电磁波特征(舒曼共振)来推断外行星的水含量。 Schumann共振检测可潜在地用于限制巨型行星(主要是天王星和海王星)的挥发物的不确定性,因为此类TLF-ELF波浪特征与电导率曲线和水含量密切相关。
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