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Pluto and Charon: A Case of Precession-Orbit Resonance?

机译:冥王星和夏隆:进动轨道共振的情况?

摘要

Pluto may be the only known case of precession-orbit resonance in the solar system. The Pluto-Charon system orbits the Sun with a period of 1 Plutonian year, which is 250.8 Earth years. The observed parameters of the system are such that Charon may cause Pluto to precess with a period near 250.8 Earth years. This gives rise to two possible resonances, heretofore unrecognized. The first is due to Pluto's orbit being highly eccentric, giving solar torques on Charon with a period of 1 Plutonian year. Charon in turn drives Pluto near its precession period. Volatiles, which are expected to shuttle across Pluto's surface between equator and pole as Pluto's obliquity oscillates, might change the planet's dynamical flattening enough so that Pluto crosses the nearby resonance, forcing the planet's equatorial plane to depart from Charon's orbital plane. The mutual tilt can reach as much as 2 deg after integrating over 5.6 x 10(exp 6) years, depending upon how close Pluto is to the resonance and the supply of volatiles. The second resonance is due to the Sun's traveling above and below Charon's orbital plane; it has a period half that of the eccentricity resonance. Reaching this half-Plutonian year resonance requires a much larger but still theoretically possible amount of volatiles. In this case the departure of Charon from an equatorial orbit is about 1 deg after integrating for 5.6 x 10(exp 6) years. The calculations ignore libration and tidal friction. It is not presently known how large the mutual tilt can grow over the age of the solar system, but if it remains only a few degrees, then observing such small angles from a Pluto flyby mission would be difficult. It is not clear why the parameters of the Pluto-Charon system are so close to the eccentricity resonance.
机译:冥王星可能是太阳系中进动轨道共振的唯一已知情况。冥王星-夏隆星系绕太阳公转的周期为1个Plutonian年,即250.8地球年。观测到的系统参数使得Charon可能使冥王星进动,周期约为250.8地球年。这引起了迄今为止可能未被认识的两种可能的共振。首先是由于冥王星的轨道是高度偏心的,它在Charon上产生了太阳系扭力,周期为1 Plutonian年。 Charon继而将冥王星驱逐到岁差时期。随着冥王星的倾角振荡,预计挥发物会在赤道和极点之间的冥王星表面上穿梭,这可能会改变行星的动力展平度,从而使冥王星穿越附近的共振,从而迫使行星的赤道平面偏离夏隆的轨道平面。积分超过5.6 x 10(exp 6)年后,相互倾斜可以达到2度,这取决于冥王星与共振的接近程度和挥发物的供应。第二次共振是由于太阳在Charon轨道平面的上方和下方移动。它的周期是偏心共振的一半。达到这个半年的共振时间需要更大但理论上仍可能的挥发物。在这种情况下,经过5.6 x 10(exp 6)年的积分,Charon从赤道轨道的偏离约为1度。这些计算忽略了自由和潮汐摩擦。目前尚不知道在太阳系的寿命中相互倾斜会增大到多少,但是如果仅保持几个角度,则很难从冥王星飞越任务观察到如此小的角度。目前尚不清楚为什么冥王星-Charon系统的参数如此接近偏心共振。

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