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Discrete breathers - Advances in theory and applications

机译:离散呼吸器-理论和应用进展

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Nonlinear classical Hamiltonian lattices exhibit generic solutions - discrete breathers. They are time-periodic and (typically exponentially) localized in space. The lattices have discrete translational symmetry. Discrete breathers are not confined to certain lattice dimensions. We will introduce the concept of these localized excitations and review their basic properties including dynamical and structural stability. We then focus on advances in the theory of discrete breathers in three directions - scattering of waves by these excitations, persistence of discrete breathers in long transient processes and thermal equilibrium, and their quantization. The second part of this review is devoted to a detailed discussion of recent experimental observations and studies of discrete breathers, including theoretical modelling of these experimental situations on the basis of the general theory of discrete breathers. in particular we will focus on their detection in Josephson junction networks, arrays of coupled nonlinear optical waveguides, Bose-Einstein condensates loaded on optical lattices, antiferromagnetic layered structures, PtCl based single crystals and driven micromechanical cantilever arrays.
机译:非线性经典哈密顿量格表现出通用解-离散呼吸。它们是时间周期的,并且(通常是指数地)在空间中定位。晶格具有离散的平移对称性。离散通气不限于某些晶格尺寸。我们将介绍这些局部激发的概念,并回顾它们的基本特性,包括动力学和结构稳定性。然后,我们将重点介绍离散呼吸器在三个方向上的发展-这些激励引起的波散射,长时间瞬变过程和热平衡中离散呼吸器的持久性及其量化。这篇评论的第二部分专门讨论离散呼吸器的最新实验观察和研究,包括在离散呼吸器的一般理论基础上对这些实验情况进行理论建模。特别是,我们将专注于它们在约瑟夫森结网络,耦合的非线性光波导阵列,加载在光学晶格上的Bose-Einstein凝聚物,反铁磁层状结构,基于PtCl的单晶和驱动微机械悬臂阵列中的检测。

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