%0 Journal Article %T FURTHER STUDY OF INTERIOR CRISES IN SYSTEMS OF ORDINARY DIFFERENTIAL EQUATIONS
常微分方程系统中内部激变现象的研究 %A HONG LING %A XU JIAN-XUE %A
洪灵 %A 徐健学 %J 物理学报 %D 2000 %I %X Crises in systems of ordinary differential equations are investigated by means o f Generalized Cell Mapping Digraph (GCMD) method. We show that a boundary crisis results from a collision between a chaotic attractor and a periodic saddle on i ts basin boundary. In such a case the chaotic attractor, together with its basin of attraction, is suddenly destroyed as the parameter passes through a critical value, leaving behind a nonattracting chaotic saddle in the place of the origin al chaotic attractor in phase space. We focus here on a sudden change in the siz e of a chaotic attractor, namely an interior crisis. We demonstrate that at an i nterior crisis the chaotic attractor collides with a chaotic saddle within its b asin of attraction. This chaotic saddle is an invariant and nonattracting set an d resembles the new portion of the larger chaotic attractor just after the inter ior crisis. We also investigate the origin and evolution of the chaotic saddle. The local refining procedures of persistent and transient self-cycling sets are given. %K generalized cell mapping %K digraph %K crisis %K chaotic saddle
广义胞映射, %K 有向图, %K 激变, %K 混沌鞍 %U http://www.alljournals.cn/get_abstract_url.aspx?pcid=6E709DC38FA1D09A4B578DD0906875B5B44D4D294832BB8E&cid=47EA7CFDDEBB28E0&jid=29DF2CB55EF687E7EFA80DFD4B978260&aid=7C605B7E542D10D4&yid=9806D0D4EAA9BED3&vid=2A3781E88AB1776F&iid=DF92D298D3FF1E6E&sid=323ACE6C9CE37BAB&eid=302799463F713260&journal_id=1000-3290&journal_name=物理学报&referenced_num=0&reference_num=5