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Density waves and the viscous overstability in Saturn’s rings

机译:土星环的密度波和粘性超稳定性

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This paper considers resonantly forced spiral density waves in a dense planetary ring that is close to the threshold for viscous overstability. We solved numerically the hydrodynamical equations for a dense thin disk in the vicinity of an inner Lindblad resonance with a perturbing satellite. Our numerical scheme is one-dimensional so that the spiral shape of a density wave is taken into account through a suitable approximation of the advective terms arising from the fluid orbital motion. This paper is a first attempt to model the co-existence of resonantly forced density waves and short-scale free overstable wavetrains as observed in Saturn’s rings, by conducting large-scale hydrodynamical integrations. These integrations reveal that the two wave types undergo complex interactions, not taken into account in existing models for the damping of density waves. In particular we found that, depending on the relative magnitude of both wave types, the presence of viscous overstability can lead to the damping of an unstable density wave and vice versa. The damping of the short-scale viscous overstability by a density wave was investigated further by employing a simplified model of an axisymmetric ring perturbed by a nearby Lindblad resonance. A linear hydrodynamic stability analysis as well as local N-body simulations of this model system were performed and support the results of our large-scale hydrodynamical integrations.
机译:本文考虑了一个接近于粘性超稳定阈值的致密行星环中的共振强迫螺旋密度波。我们用一个扰动卫星数值求解了内部Lindblad共振附近的致密薄盘的流体动力学方程。我们的数值方案是一维的,因此可以通过适当地近似由流体轨道运动引起的对流项来考虑密度波的螺旋形状。本文是首次尝试通过进行大规模水动力积分来模拟在土星环中观测到的共振强迫密度波和短尺度自由超稳定波串的共存。这些积分表明,这两种波类型都经历了复杂的相互作用,而在现有模型中并未考虑到密度波的阻尼。特别是,我们发现,根据两种波的相对大小,粘性超稳定性的存在会导致不稳定密度波的衰减,反之亦然。通过采用邻近林德布拉德共振扰动的轴对称环的简化模型,进一步研究了密度波对短尺度粘性超稳定性的阻尼。进行了线性水动力稳定性分析以及该模型系统的局部N体模拟,并支持了我们大规模水动力积分的结果。

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