论文标题
自主探测无序悬浮液的粘弹性
Autonomously Probing Viscoelasticity in Disordered Suspensions
论文作者
论文摘要
最近的实验表明,胶体玻璃中的自propelted微型流变学探针的强烈旋转扩散增强。在这里,我们使用具有摩擦探针 - 中耦合的模拟提供了微观理解,该模拟将主动翻译转换为旋转。扩散的增强来自培养基的无序结构和接触次数的二阶过渡时的峰值。我们的结果重现了胶体玻璃实验的显着特征,并支持适用于更广泛的粘弹性悬浮液的有效描述。
Recent experiments show a strong rotational-diffusion enhancement for self-propelled microrheological probes in colloidal glasses. Here, we provide microscopic understanding using simulations with a frictional probe-medium coupling that converts active translation into rotation. Diffusive enhancement emerges from the medium's disordered structure and peaks at a second-order transition in the number of contacts. Our results reproduce the salient features of the colloidal glass experiment and support an effective description that is applicable to a broader class of viscoelastic suspensions.