Shannon entropy applied to the planar restricted three-body problem

被引:0
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作者
C. Beaugé
P. M. Cincotta
机构
[1] Universidad Nacional de Córdoba,Instituto de Astronomía Teórica y Experimental (IATE), Observatorio Astronómico
[2] Universidad Nacional de La Plata and Instituto de Astrofísica de La Plata (CONICET-UNLP),Grupo de Caos en Sistemas Hamiltonianos, Facultad de Ciencias Astronómicas y Geofísicas
来源
Celestial Mechanics and Dynamical Astronomy | 2019年 / 131卷
关键词
Three-body problem; Resonances; Stability;
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学科分类号
摘要
We present a numerical study of the application of the Shannon entropy technique to the planar restricted three-body problem in the vicinity of first-order interior mean-motion resonances with the perturber. We estimate the diffusion coefficient for a series of initial conditions and compare the results with calculations obtained from the time evolution of the variance in the semimajor axis and eccentricity plane. Adopting adequate normalization factors, both methods yield comparable results, although much shorter integration times are required for entropy calculations. A second advantage of the use of entropy is that it is possible to obtain reliable results even without the use of ensembles or analysis restricted to surfaces of section or representative planes. This allows for a much more numerically efficient tool that may be incorporated into a working N-body code and applied to numerous dynamical problems in planetary dynamics. Finally, we estimate instability times for a series of initial conditions in the 2/1 and 3/2 mean-motion resonances and compare them with times of escape obtained from directed N-body simulations. We find very good agreement in all cases, not only with respect to average values but also in their dispersion for nearby trajectories.
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