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首页> 外文期刊>Physica, D. Nonlinear phenomena >Chaotic breather formation, coalescence, and evolution to energy equipartition in an oscillatory chain
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Chaotic breather formation, coalescence, and evolution to energy equipartition in an oscillatory chain

机译:振荡链中混沌通气的形成,合并和能量均分的演化

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We study the formation and evolution of chaotic breathers (CBs) on the Fermi-Pasta-Ulam oscillator chain with quartic nonlinearity (FPU-beta system). Starting with most of the energy in a single high-frequency mode, the mode is found to breakup on a fast time scale into a number of spatially localized structures (CBs) which, on a slower time scale, coalesce into a single CB. On a usually longer time scale, depending strongly on the energy, the CB gives up its energy to lower frequency modes, approaching energy equipartition among modes. We analyze the behavior, theoretically, using an envelope approximation to the discrete chain of oscillators. For fixed boundaries, periodic nonlinear solutions are found. The numerical structures formed after the fast breakup are found to approximate the underlying equilibrium. These structures are shown, theoretically, to undergo slow translational motions, and an estimated time for them to coalesce into a single chaotic breather are found to agree with the numerically determined scaling tau (B) alpha E-1. A previously developed theory of the decay of the CB amplitude to approach equipartition is modified to explicitly consider the interaction of the breather with background modes. The scaling to equipartition of T-eq alpha E-2 agrees with the numerical scaling and gives the correct order of magnitude of T-eq. (C) 2001 Elsevier Science B.V. All rights reserved. [References: 27]
机译:我们研究费米-帕斯塔-乌拉姆振荡器链上具有四次非线性(FPU-β系统)的混沌通气(CB)的形成和演化。从单个高频模式中的大部分能量开始,发现该模式在快速的时间尺度上分解为许多空间局部的结构(CB),而在较慢的时间尺度上,它们合并为单个CB。在通常较长的时间范围内,CB强烈依赖于能量,CB将其能量放弃给较低频率的模式,接近模式之间的能量均分。从理论上讲,我们使用包络近似法对振荡器的离散链进行分析。对于固定边界,找到了周期非线性解。发现快速分解后形成的数值结构近似于基本平衡。从理论上讲,这些结构经历了缓慢的平移运动,并且估计它们结成一个单一的混沌通气的时间与数值确定的比例tau(B)alpha E-1一致。修改了以前开发的CB振幅接近均分的衰减理论,以明确考虑呼吸器与背景模式的相互作用。 T-eq alpha E-2的等分换算与数值换算一致,并给出T-eq的正确量级。 (C)2001 Elsevier Science B.V.保留所有权利。 [参考:27]

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