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Analysis of Energy Eigenvalue in Complex Ginzburg–Landau Equation

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【作者】 高继华肖骐谢玲玲张昕昕杨海涛

【Author】 Ji-Hua Gao;Qi Xiao;Ling-Ling Xie;Xin-Xin Zhang;Hai-Tao Yang;Key Laboratory of Special Functional Materials of Shenzhen,College of Materials,Shenzhen University;

【机构】 Key Laboratory of Special Functional Materials of Shenzhen,College of Materials,Shenzhen University

【摘要】 In this paper, we consider the two-dimensional complex Ginzburg–Landau equation(CGLE) as the spatiotemporal model, and an expression of energy eigenvalue is derived by using the phase-amplitude representation and the basic ideas from quantum mechanics. By numerical simulation, we find the energy eigenvalue in the CGLE system can be divided into two parts, corresponding to spiral wave and bulk oscillation. The energy eigenvalue of spiral wave is positive, which shows that it propagates outwardly; while the energy eigenvalue of spiral wave is negative, which shows that it propagates inwardly. There is a necessary condition for generating a spiral wave that the energy eigenvalue of spiral wave is greater than bulk oscillation. A wave with larger energy eigenvalue dominates when it competes with another wave with smaller energy eigenvalue in the space of the CGLE system. At the end of this study, a tentative discussion of the relationship between wave propagation and energy transmission is given.

【Abstract】 In this paper, we consider the two-dimensional complex Ginzburg–Landau equation(CGLE) as the spatiotemporal model, and an expression of energy eigenvalue is derived by using the phase-amplitude representation and the basic ideas from quantum mechanics. By numerical simulation, we find the energy eigenvalue in the CGLE system can be divided into two parts, corresponding to spiral wave and bulk oscillation. The energy eigenvalue of spiral wave is positive, which shows that it propagates outwardly; while the energy eigenvalue of spiral wave is negative, which shows that it propagates inwardly. There is a necessary condition for generating a spiral wave that the energy eigenvalue of spiral wave is greater than bulk oscillation. A wave with larger energy eigenvalue dominates when it competes with another wave with smaller energy eigenvalue in the space of the CGLE system. At the end of this study, a tentative discussion of the relationship between wave propagation and energy transmission is given.

【基金】 Supported by the Basic Research Project of Shenzhen,China under Grant Nos.JCYJ 20140418181958489 and 20160422144751573
  • 【文献出处】 Communications in Theoretical Physics ,理论物理通讯(英文版) , 编辑部邮箱 ,2017年06期
  • 【分类号】O175
  • 【被引频次】2
  • 【下载频次】9
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