论文标题

区域风对行星振荡和土星环地震学的影响

Impacts of zonal winds on planetary oscillations and Saturn ring seismology

论文作者

Dewberry, Janosz W., Mankovich, Christopher R., Fuller, Jim

论文摘要

通过行星振荡模式激发土星C环中密度和弯曲波的激发为了解气体巨头内部和旋转提供了独特的机会。但是,与土星的快速和差异旋转有关的理论并发症构成了环波检测的全面利用。我们使用对土星的多态,多troptopic equilibria中土星的纬向风进行建模的差异旋转的完整的非扰动处理来计算振荡模式。我们发现,由于基本模式的频率(F模式)的差异旋转频率的差异旋转影响的先前,被认为是C环中检测到的大多数波的基本模式(F-Modes)的变化,这是由于通过差异旋转的平衡形状和结构进行了省略的修改。这些频率高估所引入的偏差很小,但相对于Cassini数据所提供的不确定性而言是显着的。另外,我们考虑了土星样差异旋转对F模型和内部重力模式(G模式)旋转混合的非扰动作用,这与检测到具有非常紧密的分裂模式速度的多密度波的检测。我们发现,高阶旋转效应可以在以大球形谐波度为主的G模型的表面重力扰动中产生刻度级的增强,无论与部门F模式的频率分离如何。尽管增强了这种增强,我们发现观察到的密度波的细分不太可能涉及$ \ ell \ gtrsim 10 $主导的G模型。这种限制可能有助于推断土星可能的内部结构。

The excitation of density and bending waves in Saturn's C ring by planetary oscillation modes presents a unique opportunity to learn about gas giant interiors and rotation. However, theoretical complications related to Saturn's rapid and differential rotation pose a barrier to the full utilization of ring wave detections. We calculate oscillation modes using a complete, non-perturbative treatment of differential rotation modelled after Saturn's zonal winds in self-consistently computed, polytropic equilibria. We find that previous, approximate treatments of the effects of differential rotation in Saturn overestimate shifts in the frequencies of fundamental modes (f-modes) thought to be responsible for the majority of the waves detected in the C ring, due to an omitted modification of the equilibrium shape and structure of the planet by differential rotation. The bias introduced by these frequency overestimates is small, but significant relative to the uncertainties afforded by Cassini data. We additionally consider the non-perturbative effects of Saturn-like differential rotation on the rotational mixing of f-modes and internal gravity modes (g-modes), which is relevant to detections of multiple density waves with very closely split pattern speeds. We find that higher order rotational effects can produce orders-of-magnitude enhancements in the surface gravitational perturbations of g-modes dominated by large spherical harmonic degrees $\ell$, regardless of frequency separation from the sectoral f-mode. Despite this enhancement, we find that the observed fine-splitting of density waves is unlikely to involve g-modes dominated by $\ell\gtrsim 10$. This restriction may aid in the inference of possible internal structures for Saturn.

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