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具有谐波混合的交流力作用下的孤子棘轮状动力学

Soliton ratchetlike dynamics by ac forces with harmonic mixing.

作者信息

Salerno Mario, Zolotaryuk Yaroslav

机构信息

Dipartamento di Fisica E. R. Caianiello and Istituto Nazionale di Fisica della Materia, Universitá di Salerno, I-84081 Baronissi, Salerno, Italy.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2002 May;65(5 Pt 2):056603. doi: 10.1103/PhysRevE.65.056603. Epub 2002 Apr 29.

DOI:10.1103/PhysRevE.65.056603
PMID:12059727
Abstract

The possibility of unidirectional motion of a kink (topological soliton) of a dissipative sine-Gordon equation in the presence of ac forces with harmonic mixing (at least biharmonic) and of zero mean, is presented. The dependence of the kink mean velocity on system parameters is investigated numerically and the results are compared with a perturbation analysis based on a point-particle representation of the soliton. We find that first order perturbative calculations lead to incomplete descriptions, due to the important role played by the soliton-phonon interaction in establishing the phenomenon. The role played by the temporal symmetry of the system in establishing soliton dc motions that resemble usual soliton ratchets, is also emphasized. In particular, we show the existence of an asymmetric internal mode on the kink profile that couples to the kink translational mode through the damping in the system. Effective soliton transport is achieved when the internal mode and the external force get phase locked. We find that for kinks driven by biharmonic drivers consisting of the superposition of a fundamental driver with its first odd harmonic, the transport arises only due to this internal mode mechanism, while for biharmonic drivers with even harmonic superposition, also a point-particle contribution to the drift velocity is present. The phenomenon is robust enough to survive the presence of thermal noise in the system and can lead to several interesting physical applications.

摘要

本文提出了在存在具有谐波混频(至少双谐波)且均值为零的交流力的情况下,耗散正弦 - 戈登方程的扭结(拓扑孤子)单向运动的可能性。通过数值研究了扭结平均速度对系统参数的依赖性,并将结果与基于孤子点粒子表示的微扰分析进行了比较。我们发现,由于孤子 - 声子相互作用在该现象的形成中起着重要作用,一阶微扰计算会导致不完整的描述。还强调了系统的时间对称性在建立类似于普通孤子棘轮的孤子直流运动中所起的作用。特别是,我们展示了扭结轮廓上存在一种不对称内部模式,它通过系统中的阻尼与扭结平移模式耦合。当内部模式和外力相位锁定时,实现了有效的孤子输运。我们发现,对于由基频驱动与其第一奇次谐波叠加组成的双谐波驱动的扭结,输运仅由这种内部模式机制引起,而对于具有偶次谐波叠加的双谐波驱动,点粒子对漂移速度也有贡献。该现象足够稳健,能够在系统存在热噪声的情况下存在,并可导致多种有趣的物理应用。

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