首页> 外文期刊>The Astrophysical journal >THE SECULAR EVOLUTION OF A CLOSE RING-SATELLITE SYSTEM: THE EXCITATION OF SPIRAL DENSITY WAVES AT A NEARBY GAP EDGE
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THE SECULAR EVOLUTION OF A CLOSE RING-SATELLITE SYSTEM: THE EXCITATION OF SPIRAL DENSITY WAVES AT A NEARBY GAP EDGE

机译:闭环卫星系统的演化:邻近间隙边缘的螺旋密度波激发

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摘要

The Lagrange planetary equations are used to study secular evolution of a small, eccentric satellite that orbits within a narrow gap in a broad, self-gravitating planetary ring. These equations show that the satellite's secular perturbations of the ring will excite a very long wavelength spiral density wave that propagates away from the gap's outer edge. The amplitude of these waves, as well as their dispersion relation, are derived here. That dispersion relation reveals that a planetary ring can sustain two types of density waves: long waves that, in Saturn's A ring, would have wavelengths of λ ~ O(100) km and short waves that tend to be very nonlinear and are expected to quickly damp. The excitation of these waves also transports angular momentum from the ring to the satellite in a way that damps the satellite's eccentricity e, which also tends to reduce the amplitude of subsequent waves. The rate of eccentricity damping due to this wave action is then compared to the rates at which the satellite's Lindblad and corotation resonances alter the satellite's e. These results are then applied to the gap-embedded Saturnian satellites Pan and Daphnis, and the long-term stability of their eccentricities is assessed.
机译:拉格朗日行星方程用于研究小型偏心卫星的长期演化,该卫星在宽广的自引力行星环中的狭窄间隙内运行。这些等式表明,卫星对环的长期扰动将激发很长的波长螺旋密度波,该波从间隙的外边缘传播出去。这些波的幅度及其色散关系在此处得出。色散关系表明,行星环可以维持两种类型的密度波:在土星A环中,长波的波长为λ〜O(100)km,而短波则倾向于非常非线性,并且有望很快潮湿。这些波的激发还以阻尼卫星偏心率e的方式将角动量从环传输到卫星,这也趋于减小后续波的振幅。然后将由于这种波浪作用而产生的偏心阻尼率与卫星的Lindblad和同旋转共振改变卫星的e的速率进行比较。然后将这些结果应用于嵌入了缝隙的土星卫星Pan和Daphnis,并评估了其离心率的长期稳定性。

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