Symbolic dynamics and big bang bifurcation in Weibull-Gompertz-Fréchet's growth models
Data(s) |
10/05/2016
10/05/2016
2015
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Resumo |
In this paper, motivated by the interest and relevance of the study of tumor growth models, a central point of our investigation is the study of the chaotic dynamics and the bifurcation structure of Weibull-Gompertz-Fréchet's functions: a class of continuousdefined one-dimensional maps. Using symbolic dynamics techniques and iteration theory, we established that depending on the properties of this class of functions in a neighborhood of a bifurcation point PBB, in a two-dimensional parameter space, there exists an order regarding how the infinite number of periodic orbits are born: the Sharkovsky ordering. Consequently, the corresponding symbolic sequences follow the usual unimodal kneading sequences in the topological ordered tree. We verified that under some sufficient conditions, Weibull-Gompertz-Fréchet's functions have a particular bifurcation structure: a big bang bifurcation point PBB. This fractal bifurcations structure is of the so-called "box-within-a-box" type, associated to a boxe ω1, where an infinite number of bifurcation curves issues from. This analysis is done making use of fold and flip bifurcation curves and symbolic dynamics techniques. The present paper is an original contribution in the framework of the big bang bifurcation analysis for continuous maps. |
Identificador |
ROCHA, José Leonel Linhares da; TAHA, Abdel Kaddous; FOURNIER-PRUNARET, Danièle Symbolic dynamics and big bang bifurcation in Weibull-Gompertz-Fréchet's growth models. Applied Mathematics and Information Sciences. ISSN. 1935-0090. Vol. 9 Nr. 5, (2015), 2377-2388. 1935-0090 http://hdl.handle.net/10400.21/6180 10.12785/amis/090520 |
Idioma(s) |
eng |
Publicador |
Natural Sciences Publishing Co |
Direitos |
closedAccess |
Palavras-Chave | #Big bang bifurcation #Fold and flip bifurcation curves #Kneading sequences #Symbolic dynamics #Weibull-Gompertz-Fréchet's growth models |
Tipo |
article |