Symmetry Structure of the Period-Doubling Bifurcation of the Period-2, Step-1 Accelerator Mode in the Standard Map
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概要
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The period-2, step-1 accelerator mode in the standard map undergoes a period-doubling bifurcation when the stochastic parameter A exceeds the value 0.6512. The structural transition observed in the boundary islands is studied thoroughly using higher-order symmetry analysis. After the formation of dominant 5-cycles around the central island at A = 0.6500, the boundary region displays 7-cycles inside 12-cycles at A = 0.6506. Then, the principal island undergoes a period-doubling bifurcation around A = 0.6515, although the surrounding boundary islands retain the characteristic structure of the original period-2 mode. After the completion of the period-doubling bifurcation around A = 0.6520, the principal island splits into a period-4 mode, and the surrounding higher-order periodic islands become satellites of the period-doubled mode. Analysis of the higher-order symmetry structure reveals that such intricate processes are associated with the splitting of the principal island with accompanying boundary islands formation.
- 理論物理学刊行会の論文
- 2000-10-25
著者
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Ichikawa Y
Chubu Univ. Kasugai Jpn
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ICHIKAWA Yoshi
College of Engineering, Chubu University
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Murakami W
Chubu Univ. Kasugai Jpn
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MURAKAMI Chieko
College of Engineering, Chubu University
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MURAKAMI Wakako
College of Engineering, Chubu University
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Murakami Wakako
College Of Engineering Chubu University
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Murakami C
Chubu Univ. Kasugai Jpn
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Murakami Chieko
College Of Engineering Chubu University
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Ichikawa Yoshi
College Of Engineering Chubu University
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- Higher Order Symmetry and Bifurcation of the Period-2 Step-1 Accelerator Mode in the Standard Map
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