三轴性和质量变化对受限三体问题三角形平衡点周围运动的影响

IF 1.1 4区 物理与天体物理 Q3 ASTRONOMY & ASTROPHYSICS
Oni Leke, Veronica Cyril-Okeme, Orum Samuel
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引用次数: 0

摘要

本文研究了限制三体问题(R3BP)中原色的三轴性和质量变化对绕三角形平衡点(TEPs)运动的影响。质点的运动在Gylden-Mestschersky问题的框架内进行,质点的变化遵循统一的Mestschersky定律,较大的质点为三轴体。导出了时变系统的动力学方程,并将其转化为常系数方程组。研究了常系数方程的解,发现存在一对解析的tep。研究了TEPs的稳定性,发现这些点可以是稳定的,也可以是不稳定的,这取决于变质量参数、临界质量参数、大质点的三轴性和质量变化常数\(\kappa \)。稳定区域的增大和减小取决于较大的初始三轴性和变质量参数的稳定或不稳定行为。时间相关系统的tep的稳定性是不稳定的,其解不收敛,而是随时间趋于无穷。在数值上,我们利用涵盖大多数天文系统的质量参数,对较大的三轴原星和较小的球形天体引力场中的粒子的一般情况进行了研究,以证明我们的问题在天文学中的应用。结果表明,变质量参数下的TEPs可以有有限多对,并探讨了不同质量参数下TEPs的稳定性区域。此外,零速度曲线揭示了更有趣的场景,这些场景无法通过分析观察到。观察到,随着双星质量参数的增大,允许粒子运动的区域变大,反之亦然,而较大的原质点向三轴体的偏离总是使允许运动的区域减小,变化常数可以增大或减小允许运动的区域。该研究可以应用于提供对无限小质量周围的变化质量原质与形状变化耦合的动力学的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Impact of Triaxiality and Mass Variations on Motion around Triangular Equilibrium Points of the Restricted Three-body Problem

Impact of Triaxiality and Mass Variations on Motion around Triangular Equilibrium Points of the Restricted Three-body Problem

This paper investigates the impact of triaxiality and mass variations of the primaries on motion around the triangular equilibrium points (TEPs) of the restricted three-body problem (R3BP). The motion of the primaries takes place within the framework of the Gylden–Mestschersky problem while their mass variation occur in accordance with the unified Mestschersky law and the bigger primary is a triaxial body. The dynamical equations of the time-dependent system are derived and transformed to a system of equations with constant coefficients. The solutions of the equations with constant coefficients were explored, and it was seen that there exists analytically a pair of TEPs. The stability of the TEPs is investigated and it is seen that the points can be stable and unstable, depending on the variable mass parameters, critical mass parameters, triaxiality of the bigger primary and the constant \(\kappa \) of mass variation. The region of stability increases and decreases depending on the stabilizing or destabilizing behaviors of the triaxiality of the bigger primary and the variable mass parameter. The stability of the TEPs of the time-dependent system are unstable as solutions do not converge but tend to infinity with time. Numerically, we explore the study for the general case of a particle in the gravitational field of the bigger triaxial primary and a smaller spherical body using the mass parameters which covers for most astronomical systems to demonstrate the applications of our problem in astronomy. It is seen that there can be finitely many pairs of TEPs for variable mass parameters, and the region of stability of the TEPs for different mass parameters was explored. Further, the zero velocity curves unveiled more interesting scenarios that could not have been observed analytically. It is observed that an increasing mass parameter of the binary gives a larger region where motion of the particle is allowed and vice versa, while the departure of the bigger primary to a triaxial body always reduces region of allowed motion and the variation constant can increase or decrease region where motion is allowed. The study can be applied to provide insights into the dynamics of an infinitesimal mass around variable mass primaries coupled with variations in shape.

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来源期刊
Astronomy Reports
Astronomy Reports 地学天文-天文与天体物理
CiteScore
1.40
自引率
20.00%
发文量
57
审稿时长
6-12 weeks
期刊介绍: Astronomy Reports is an international peer reviewed journal that publishes original papers on astronomical topics, including theoretical and observational astrophysics, physics of the Sun, planetary astrophysics, radio astronomy, stellar astronomy, celestial mechanics, and astronomy methods and instrumentation.
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