论文标题
无序网络的异常线性弹性
Anomalous linear elasticity of disordered networks
论文作者
论文摘要
连续弹性是一种适用于广泛物理系统和现象的强大工具。然而,了解材料障碍可能导致连续弹性的破裂的方式和范围内的范围尚未完全理解。我们根据最新的理论发展和广泛的数值计算来表明,在临界刚性转变附近的弹性网络,例如在生命系统中丰富的应变纤维生物聚合物网络,揭示了在相关长度以下的异常长范围线性弹性响应。与普通的连续弹性相比,这种出现的异常弹性在本质上是非伴随的,其具有质量不同的多产膨胀结构,并且扰动的空间衰减较慢。简要讨论了这些结果的潜在普遍性,它们的含义(例如,通过生物细胞外矩阵进行细胞 - 细胞通信)和开放性问题进行了简要讨论。
Continuum elasticity is a powerful tool applicable in a broad range of physical systems and phenomena. Yet, understanding how and on what scales material disorder may lead to the breakdown of continuum elasticity is not fully understood. We show, based on recent theoretical developments and extensive numerical computations, that disordered elastic networks near a critical rigidity transition, such as strain-stiffened fibrous biopolymer networks that are abundant in living systems, reveal an anomalous long-range linear elastic response below a correlation length. This emergent anomalous elasticity, which is non-affine in nature, is shown to feature a qualitatively different multipole expansion structure compared to ordinary continuum elasticity, and a slower spatial decay of perturbations. The potential degree of universality of these results, their implications (e.g. for cell-cell communication through biological extracellular matrices) and open questions are briefly discussed.