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The barycentric motion of exoplanet host stars - Tests of solar spin-orbit coupling

机译:系外行星恒星的重心运动-太阳自旋轨道耦合测试

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Context. Empirical evidence suggests a tantalising but unproven link between various indicators of solar activity and the barycentric motion of the Sun. The latter is exemplified by transitions between regular and more disordered motion modulated by the motions of the giant planets, and rare periods of retrograde motion with negative orbital angular momentum. An examination of the barycentric motion of exoplanet host stars, and their stellar activity cycles, has the potential of proving or disproving the Sun’s motion as an underlying factor in the complex patterns of short- and long-term solar variability indices, by establishing whether such correlations exist in other planetary systems. In either case, these studies may lead to further insight into the nature of the solar dynamo. Aims. Some 40 multiple exoplanet systems are now known, all with reasonably accurate orbital elements. The forms and dynamical functions of the barycentric motion of their host stars are examined. These results can be compared with long-term activity indicators of exoplanet host stars, as they become available, to examine whether the correlations claimed for the Sun also exist in other systems. Methods. Published orbital elements of multiple exoplanetary systems are used to examine their host star barycentric motions. For each system, we determine analytically the orbital angular momentum of the host star, and its rate of change. Results. A variety of complex patterns of barycentric motions of exoplanet host stars is demonstrated, depending on the number, masses and orbits of the planets. Each of the behavioural types proposed to correlate with solar activity are also evident in exoplanet host stars: repetitive patterns influenced by massive multiple planets, epochs of rapid change in orbital angular momentum, and intervals of negative orbital angular momentum. Conclusions. The study provides the basis for independent investigations of the widely-studied but unproven suggestion that the Sun’s motion is somehow linked to various indicators of solar activity. We show that, because of the nature of their barycentric motions, the host stars HD?168443 and HD?74156 offer particularly powerful tests of this hypothesis.
机译:上下文。经验证据表明,太阳活动的各种指标与太阳的重心运动之间存在着诱人但未经证实的联系。后者以巨行星运动所调制的规则运动与无序运动之间的过渡,以及轨道角动量为负的逆行运动的罕见时期为例。对系外行星恒星的重心运动及其恒星活动周期进行检查,有可能证明或证实太阳的运动是短期和长期太阳变异性指数复杂模式的潜在因素。其他行星系统中也存在相关性。无论哪种情况,这些研究都可能导致人们进一步了解太阳发电机的性质。目的现在已知约有40个多系外行星系统,所有系统都具有相当准确的轨道要素。研究了其宿主恒星重心运动的形式和动力学功能。可以将这些结果与系外行星宿主恒星的长期活动指标进行比较,以检查它们与太阳的相关性是否也存在于其他系统中。方法。多个系外行星系统的已发布轨道要素用于检查其宿主恒星的重心运动。对于每个系统,我们通过分析确定主恒星的轨道角动量及其变化率。结果。展示了系外行星宿主恒星重心运动的各种复杂模式,具体取决于行星的数量,质量和轨道。提议与太阳活动相关的每种行为类型在系外行星宿主恒星中也很明显:受大型多行星影响的重复模式,轨道角动量快速变化的时期以及负轨道角动量的间隔。结论。该研究为广泛研究但未经证实的关于太阳运动与某种太阳活动指标有关的建议提供了独立研究的基础。我们证明,由于重心运动的性质,主恒星HD?168443和HD?74156对这一假设提供了特别有力的检验。

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