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Devil's staircase and the absence of chaos in the dc- and ac-driven overdamped Frenkel-Kontorova model

机译:魔鬼的楼梯和DC和交流驱动的覆盖Frenkel-Kontorova模型中没有混乱

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摘要

The devil's staircase structure arising from the complete mode locking of an entirely nonchaotic system, the overdamped dc+ac driven Frenkel-Kontorova model with deformable substrate potential, was observed. Even though no chaos was found, a hierarchical ordering of the Shapiro steps was made possible through the use of a previously introduced continued fraction formula. The absence of chaos, deduced here from Lyapunov exponent analyses, can be attributed to the overdamped character and the Middleton no-passing rule. A comparative analysis of a one-dimensional stack of Josephson junctions confirmed the disappearance of chaos with increasing dissipation. Other common dynamic features were also identified through this comparison. A detailed analysis of the amplitude dependence of the Shapiro steps revealed that only for the case of a purely sinusoidal substrate potential did the relative sizes of the steps follow a Farey sequence. For nonsinusoidal (deformed) potentials, the symmetry of the Stern-Brocot tree, depicting all members of particular Farey sequence, was seen to be increasingly broken, with certain steps being more prominent and their relative sizes not following the Farey rule.
机译:观察到魔鬼的楼梯结构完全锁定完全非复杂系统,被覆盖的DC + AC驱动的Frenkel-Kontorova模型被观察到具有可变形的基板电位。即使没有发现混乱,也可以通过使用先前引入的持续的分数公式来实现Shapiro步骤的分层排序。从Lyapunov指数分析中推断出来的混乱,可以归因于覆盖的字符和Middleton无传递规则。 Josephson结合一维堆栈的比较分析证实了混沌消失随着耗散的增加。还通过这种比较识别了其他常见的动态特征。对Shapiro步骤的幅度依赖性的详细分析显示,仅针对纯粹正弦底物电位的情况仅对步骤的相对尺寸遵循Farey序列。对于非inIneoidal(变形的)电位,船尾小组织树的对称性被认为是越来越多的特定品种序列成员的对称性,某些步骤更加突出,并且它们的相对尺寸不遵循Farey规则。

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  • 来源
    《PHYSICAL REVIEW E》 |2017年第2期|022210.1-022210.12|共12页
  • 作者单位

    Department of Physics Faculty of Science University of Novi Sad Trg Dositeja Obradovica 4 21000 Novi Sad Serbia;

    Department of Physics Faculty of Science University of Novi Sad Trg Dositeja Obradovica 4 21000 Novi Sad Serbia;

    Institut fuer Theorie der Statistishen Physik - RWTH Aachen University Peter-Gruenberg Institut and Institute for Advanced Simulation Forschungszentrum Juelich Germany;

    Department of Physics Faculty of Science University of Novi Sad Trg Dositeja Obradovica 4 21000 Novi Sad Serbia;

    BLTP JINR Dubna Moscow Region 141980 Russian Federation Moscow Institute of Physics and Technology Institutsky Lane 9 Dolgoprudny Moscow Region 141700 Russian Federation;

    Department of Physics University of South Africa Science Campus Private Bag X6 Florida Park 1710 South Africa;

    BLTP JINR Dubna Moscow Region 141980 Russian Federation Department of Nanotechnology and New Materials Dubna State University Dubna Moscow Region 141980 Russian Federation;

    'Vinca' Institute of Nuclear Sciences Laboratory for Theoretical and Condensed Matter Physics – 020 University of Belgrade P.O. Box 522 11001 Belgrade Serbia;

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