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Energy transfer mechanisms in a dipole chain: From energy equipartition to the formation of breathers

机译:偶极链中的能量转移机制:从能量均方根到呼吸器的形成

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We study the energy transfer in a classical dipole chain of N interacting rigid rotating dipoles. The underlying high-dimensional potential energy landscape is analyzed in particular by determining the equilibrium points and their stability in the common plane of rotation. Starting from the minimal energy configuration, the response of the chain to excitation of a single dipole is investigated. Using both the linearized and the exact Hamiltonian of the dipole chain, we detect an approximate excitation energy threshold between a weakly and a strongly nonlinear dynamics. In the weakly nonlinear regime, the chain approaches in the course of time the expected energy equipartition among the dipoles. For excitations of higher energy, strongly localized excitations appear whose trajectories in time are either periodic or irregular, relating to the well-known discrete or chaotic breathers, respectively. The phenomenon of spontaneous formation of domains of opposite polarization and phase locking is found to commonly accompany the time evolution of the chaotic breathers. Finally, the sensitivity of the dipole chain dynamics to the initial conditions is studied as a function of the initial excitation energy by computing a fast chaos indicator. The results of this study confirm the aforementioned approximate threshold value for the initial excitation energy, below which the dynamics of the dipole chain is regular and above which it is chaotic.
机译:我们研究了N个晶体刚性旋转偶极子的典型偶极链中的能量转移。特别是通过确定旋转平面中的平衡点及其稳定性来分析底层的高维势能景观。从最小能量配置开始,研究了链对单个偶极子激发的响应。使用偶极链的线性化和精确的Hamiltonian,我们检测到弱且强烈的非线性动力学之间的近似激励能量阈值。在弱非线性方案中,链条在时间途径在偶联中的预期能量均方。对于更高能量的激励,强烈局部激发出现,其轨迹分别与众所周知的离散或混沌呼吸有关的周期性或不规则。发现相反偏振和相位锁定结构域的自发形成现象通常伴随着混沌呼吸的时间演变。最后,通过计算快速混沌指示器作为初始激发能量的函数研究了偶极链动力学对初始条件的敏感性。该研究的结果证实了初始激发能量的上述近似阈值,下面是偶极链的动态是常规的,并且其上述是混乱的。

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