Otro
Scaling properties of the fermi-ulam accelerator model
Registro en:
Brazilian Journal of Physics, v. 36, n. 3 A, p. 700-707, 2006.
0103-9733
10.1590/S0103-97332006000500022
S0103-97332006000500022
WOS:000241151000022
2-s2.0-33748289297.pdf
2-s2.0-33748289297
Autor
Da Silva, Jafferson Kamphorst Leal
Ladeira, Denis Gouvêa
Leonel, Edson D.
McClintock, P. V E
Kamphorst, Sylvie O.
Resumen
The chaotic low energy region (chaotic sea) of the Fermi-Ulam accelerator model is discussed within a scaling framework near the integrable to non-integrable transition. Scaling results for the average quantities (velocity, roughness, energy etc.) of the simplified version of the model are reviewed and it is shown that, for small oscillation amplitude of the moving wall, they can be described by scaling functions with the same characteristic exponents. New numerical results for the complete model are presented. The chaotic sea is also characterized by its Lyapunov exponents.