首页> 外文期刊>Astronomy and astrophysics >ODEA: Orbital Dynamics in a complex Evolving Architecture
【24h】

ODEA: Orbital Dynamics in a complex Evolving Architecture

机译:ODEA:复杂的不断发展的体系结构中的轨道动力学

获取原文
       

摘要

Context. Mixed-variable symplectic integrators are widely used in orbital dynamics. However, they have been developed for Solar system-type architectures, and can not handle evolving hierarchy, in particular in systems with two or more stellar components. Such configuration may have occurred in the history of HD 106906, a tight pair of F-type stars surrounded by a debris disk and a planetary-mass companion on a wide orbit. Aims. We present the new algorithm ODEA , based on the symplectic algorithm Swift HJS , that can model any system (binary,...) with unstable architecture. We study the peculiar system HD 106906 as a testcase for the code. Methods. We define and compute a criterion based on acceleration ratios to indicate when the initial hierarchy is not relevant anymore. A new hierarchy is then computed. The code is applied to study the two recently evidenced fly-bys that occurred on system HD 106906, to determine if they could account for the wide orbit of the planet. Thousands of simulations have been performed to account for the uncertainty on the perturbers coordinates and velocities. Results. The algorithm is able to handle any change of hierarchy, temporary or not. We used it to fully model HD 106906 encounters. The simulations confirm that the fly-bys could have stabilized the planet orbit, and show that it can account for the planet probable misalignment with respect to the disk plane as well as the disk morphology. However, that requires a small distance at closest approach (?0.05 pc), and this configuration is not guaranteed. Conclusions. ODEA is a very good choice for the study of non-Solar type architecture. It can now adapt to an evolving hierarchy, and is thus suitable to study capture of planets and dust. Further observations of the perturbers, in particular their radial velocity, are required to conclude on the effects of the fly-by on system HD 106906.
机译:上下文。混合变量辛积分器广泛用于轨道动力学中。但是,它们是针对太阳能系统类型的体系结构开发的,无法处理不断发展的层次结构,尤其是在具有两个或多个恒星组件的系统中。这种构造可能发生在HD 106906的历史中,这是一对F型恒星,周围环绕着碎片盘和宽轨道上的行星质量伴星。目的我们基于辛算法Swift HJS提出了新算法ODEA,该算法可以对具有不稳定体系结构的任何系统(二进制,...)进行建模。我们研究了特殊的系统HD 106906作为代码的测试用例。方法。我们基于加速比定义和计算一个标准,以指示何时初始层次结构不再相关。然后计算新的层次结构。该代码用于研究系统HD 106906上发生的两次最近被证明的飞越,以确定它们是否可以解释该行星的宽轨道。已经进行了成千上万的模拟,以解决扰动坐标和速度的不确定性。结果。该算法能够处理任何层次结构的更改,无论是否临时。我们使用它来对HD 106906遭遇进行完全建模。仿真证实飞越可能稳定了行星的轨道,并表明它可以解释行星相对于磁盘平面以及磁盘形态的可能未对准。但是,这需要最接近的距离很小(?0.05 pc),并且不能保证此配置。结论。对于研究非太阳能类型的体系结构,ODEA是一个很好的选择。它现在可以适应不断发展的层次结构,因此适合研究行星和尘埃的捕获。需要进一步观察扰动器,尤其是它们的径向速度,才能得出飞越对系统HD 106906的影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号