论文标题

活性聚合物和丝的物理学

The physics of active polymers and filaments

论文作者

Winkler, Roland G., Gompper, Gerhard

论文摘要

活性物质药物消耗内部能量或从环境中提取能量进行运动和力产生。已经相当通用的模型,例如活性布朗颗粒的集合,表现出现象,它们在平衡时不存在,特别是运动诱导的相位分离和集体运动。像线性聚合物或细丝中一样,在结合活性剂的组件中出现了进一步吸引的非平衡效应。活性和构象自由度的相互作用会导致单个聚合物以及相互作用的合奏的新结构和动力学特征。这种平衡的聚合物是生物物质不可或缺的一部分,从细胞骨骼中的细丝的生物细胞和转录过程中的RNA/DNA到分别分别为蛋白质细菌和蠕虫,例如proteus mirabilis和caenorhobdisis elemans。甚至人工活性聚合物也已合成。活性聚合物或细丝的新兴特性取决于主动过程与其构象的自由度的耦合,这是本文所解决的方面。在存在和不存在流体动力相互作用的情况下,介绍了切向和各向同性自popell的理论模型。检查了其构象和动力学特性的后果,强调了活动与流体动力相互作用之间耦合的强大影响。突出显示了由空间和流体动力相互作用引起的新兴现象的特定特征。各种重要的,但理论上没有探索的方面是特色的,并讨论了未来的挑战。

Active matter agents consume internal energy or extract energy from the environment for locomotion and force generation. Already rather generic models, such as ensembles of active Brownian particles, exhibit phenomena, which are absent at equilibrium, in particular motility-induced phase separation and collective motion. Further intriguing nonequilibrium effects emerge in assemblies of bound active agents as in linear polymers or filaments. The interplay of activity and conformational degrees of freedom gives rise to novel structural and dynamical features of individual polymers as well as in interacting ensembles. Such out-of-equilibrium polymers are an integral part of living matter, ranging from biological cells with filaments propelled by motor proteins in the cytoskeleton, and RNA/DNA in the transcription process, to long swarming bacteria and worms such as Proteus mirabilis and Caenorhabditis elegans, respectively. Even artificial active polymers have been synthesized. The emergent properties of active polymers or filaments depend on the coupling of the active process to their conformational degrees of freedom, aspects which are addressed in this article. The theoretical models for tangentially and isotropically self-propelled or active-bath driven polymers are presented, both in presence and absence of hydrodynamic interactions. The consequences for their conformational and dynamical properties are examined, emphasizing the strong influence of the coupling between activity and hydrodynamic interactions. Particular features of emerging phenomena, induced by steric and hydrodynamic interactions, are highlighted. Various important, yet theoretically unexplored, aspects are featured and future challenges are discussed.

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