bounded trajectories
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Author(s):  
Alain Haraux

A variant of the usual formulas for gravitational and electrostatic fields, differing from those by a logarithmic term, is introduced in order to solve some questions connected with a possible atomic contraction phenomenon at large time scale and the so-called hidden mass problem in cosmology. This approach is conceptuallly related to the MOND theory of M. Milgrom but allows a reversal of attracting forces when the distance becomes very small. The asymptotic behavior of solutions of a related dissipative ODE is studied, we obtain that all bounded trajectories converge to a point where the field vanishes.


2019 ◽  
Vol 29 (11) ◽  
pp. 1950157
Author(s):  
Vladimír Krajňák ◽  
Stephen Wiggins

We consider the one degree-of-freedom Hamiltonian system defined by the Morse potential energy function (the “Morse oscillator”). We use the geometry of the level sets to construct explicit expressions for the trajectories as a function of time, their period for the bounded trajectories, and action-angle variables. We use these trajectories to prove sufficient conditions for chaotic dynamics, in the sense of Smale horseshoes, for the time-periodically perturbed Morse oscillator using a Melnikov type approach.


2015 ◽  
Vol 658 ◽  
pp. 012010 ◽  
Author(s):  
S Giancola ◽  
H Giberti ◽  
R Sala ◽  
M Tarabini ◽  
F Cheli ◽  
...  

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