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Intrinsic energy localization through discrete gap breathers in one-dimensional diatomic granular crystals

机译:通过一维双原子粒状晶体中的离散间隙呼吸器进行内在能量定位

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摘要

We present a systematic study of the existence and stability of discrete breathers that are spatially localized in the bulk of a one-dimensional chain of compressed elastic beads that interact via Hertzian contact. The chain is diatomic, consisting of a periodic arrangement of heavy and light spherical particles. We examine two families of discrete gap breathers: (1) an unstable discrete gap breather that is centered on a heavy particle and characterized by a symmetric spatial energy profile and (2) a potentially stable discrete gap breather that is centered on a light particle and is characterized by an asymmetric spatial energy profile. We investigate their existence, structure, and stability throughout the band gap of the linear spectrum and classify them into four regimes: a regime near the lower optical band edge of the linear spectrum, a moderately discrete regime, a strongly discrete regime that lies deep within the band gap of the linearized version of the system, and a regime near the upper acoustic band edge. We contrast discrete breathers in anharmonic Fermi-Pasta-Ulam (FPU)-type diatomic chains with those in diatomic granular crystals, which have a tensionless interaction potential between adjacent particles, and note that the asymmetric nature of the tensionless interaction potential can lead to hybrid bulk-surface localized solutions.
机译:我们目前对离散呼吸器的存在和稳定性进行系统研究,这些离散呼吸器在空间上位于通过Hertzian接触相互作用的一维压缩弹性珠链中。链是双原子的,由重和轻的球形颗粒的周期性排列组成。我们研究了两类离散间隙呼吸器:(1)以重粒子为中心的不稳定离散间隙呼吸器,其特征在于对称的空间能量分布;(2)以轻粒子为中心的潜在稳定的离散间隙呼吸器;以及其特征在于空间能量分布不对称。我们研究了它们在整个线性光谱带隙中的存在,结构和稳定性,并将它们分为四个状态:靠近线性光谱下光学带边缘的状态,中度离散状态,深处强烈离散状态系统线性化版本的带隙,以及靠近上声带边缘的区域。我们将非谐Fermi-Pasta-Ulam(FPU)型双原子链中的离散呼吸与双原子颗粒晶体中的离散呼吸进行了对比,后者在相邻粒子之间具有无张力的相互作用,并且请注意,无张力的相互作用电位的不对称性质可能导致杂化体表面局部化解决方案。

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