Dynamics of the perturbed restricted three-body problem with quantum correction and modified gravitational potential

IF 2.2 3区 工程技术 Q2 MECHANICS Archive of Applied Mechanics Pub Date : 2024-02-08 DOI:10.1007/s00419-024-02543-3
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Abstract

This work investigates the dynamics of the modified circular restricted three-body problem. The triaxial shape of the massive body, a modified gravitational parameter, quantum correction effect, radiation pressure and small perturbations in the Coriolis and centrifugal forces are all taken into account. The impact of the considered parameters in the equilibrium points and their linear stability is studied. Some new significant results in the critical mass parameter, \(\mu _c\) , are observed in the presence of perturbing parameters. It is found that the critical mass parameter, \(\mu _c\) , increases in the presence of modified gravitational potential, and it slightly decreases due to the quantum correction effect. Analytical construction of periodic orbits around the collinear equilibrium points is performed. Additionally, analysis of the impact of perturbations on the shape of these periodic orbits is conducted.

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带量子修正和修正引力势的扰动受限三体问题动力学
摘要 这项工作研究了修正的圆形受限三体问题的动力学。大质量体的三轴形状、修正的重力参数、量子修正效应、辐射压力以及科里奥利力和离心力的微小扰动都被考虑在内。研究了所考虑的参数对平衡点及其线性稳定性的影响。在存在扰动参数的情况下,临界质量参数 \(\mu _c\) 出现了一些新的重要结果。研究发现,临界质量参数(\(\mu _c\) )在修正引力势的作用下会增大,而在量子修正效应的作用下会略微减小。分析构建了围绕碰撞平衡点的周期轨道。此外,还分析了扰动对这些周期轨道形状的影响。
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来源期刊
CiteScore
4.40
自引率
10.70%
发文量
234
审稿时长
4-8 weeks
期刊介绍: Archive of Applied Mechanics serves as a platform to communicate original research of scholarly value in all branches of theoretical and applied mechanics, i.e., in solid and fluid mechanics, dynamics and vibrations. It focuses on continuum mechanics in general, structural mechanics, biomechanics, micro- and nano-mechanics as well as hydrodynamics. In particular, the following topics are emphasised: thermodynamics of materials, material modeling, multi-physics, mechanical properties of materials, homogenisation, phase transitions, fracture and damage mechanics, vibration, wave propagation experimental mechanics as well as machine learning techniques in the context of applied mechanics.
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