论文标题

关键纤维网络中的有限尺寸影响

Finite size effects in critical fiber networks

论文作者

Arzash, Sadjad, Shivers, Jordan L., MacKintosh, Fred C.

论文摘要

胶原蛋白等纤维网络在生理系统中很常见。这些网络的一个重要功能是为细胞和组织提供机械稳定性。在连通性的生理水平上,这种网络仅在中央力量相互作用的情况下机械地不稳定。虽然网络可以通过弯曲相互作用来稳定,但还显示它们表现出从软盘到刚性的临界过渡,这是施加菌株的函数。除了一定的应变阈值之外,可以预测,仅具有中央力相互作用的欠限网络在剪切模量中表现出不连续性。我们研究了这种过渡的有限尺寸缩放行为,并确定了热力学极限中的机械不连续性和关键指数。我们发现非均值场的行为和对关键指数过度标准关系的证据,对于该指数,网络刚度类似于热相变的热容量。在光纤网络的自动化特性中也可以找到进一步的证据。

Fibrous networks such as collagen are common in physiological systems. One important function of these networks is to provide mechanical stability for cells and tissues. At physiological levels of connectivity, such networks would be mechanically unstable with only central-force interactions. While networks can be stabilized by bending interactions, it has also been shown that they exhibit a critical transition from floppy to rigid as a function of applied strain. Beyond a certain strain threshold, it is predicted that underconstrained networks with only central-force interactions exhibit a discontinuity in the shear modulus. We study the finite-size scaling behavior of this transition and identify both the mechanical discontinuity and critical exponents in the thermodynamic limit. We find both non-mean-field behavior and evidence for a hyperscaling relation for the critical exponents, for which the network stiffness is analogous to the heat capacity for thermal phase transitions. Further evidence for this is also found in the self-averaging properties of fiber networks.

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