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Homoclinic, heteroclinic and periodic orbits of singularly perturbed systems

Homoclinic, heteroclinic and periodic orbits of singularly perturbed systems
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摘要 The main aims of this paper are to study the persistence of homoclinic and heteroclinic orbits of the reduced systems on normally hyperbolic critical manifolds, and also the limit cycle bifurcations either from the homoclinic loop of the reduced systems or from a family of periodic orbits of the layer systems. For the persistence of homoclinic and heteroclinic orbits, and the limit cycles bifurcating from a homolinic loop of the reduced systems, we provide a new and readily detectable method to characterize them compared with the usual Melnikov method when the reduced system forms a generalized rotated vector field. To determine the limit cycles bifurcating from the families of periodic orbits of the layer systems, we apply the averaging methods.We also provide two four-dimensional singularly perturbed differential systems, which have either heteroclinic or homoclinic orbits located on the slow manifolds and also three limit cycles bifurcating from the periodic orbits of the layer system. The main aims of this paper are to study the persistence of homoclinic and heteroclinic orbits of the reduced systems on normally hyperbolic critical manifolds, and also the limit cycle bifurcations either from the homoclinic loop of the reduced systems or from a family of periodic orbits of the layer systems. For the persistence of homoclinic and heteroclinic orbits, and the limit cycles bifurcating from a homolinic loop of the reduced systems, we provide a new and readily detectable method to characterize them compared with the usual Melnikov method when the reduced system forms a generalized rotated vector field. To determine the limit cycles bifurcating from the families of periodic orbits of the layer systems, we apply the averaging methods.We also provide two four-dimensional singularly perturbed differential systems, which have either heteroclinic or homoclinic orbits located on the slow manifolds and also three limit cycles bifurcating from the periodic orbits of the layer system.
作者 Xiang Zhang
出处 《Science China Mathematics》 SCIE CSCD 2019年第9期1687-1704,共18页 中国科学:数学(英文版)
基金 supported by National Natural Science Foundation of China(Grant No.11671254) Innovation Program of Shanghai Municipal Education Commission(Grant No.15ZZ012)
关键词 SINGULAR perturbation HOMOCLINIC and HETEROCLINIC ORBITS limit cycle rotating vector fields AVERAGING method singular perturbation homoclinic and heteroclinic orbits limit cycle rotating vector fields averaging method
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