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Active sculpting of colloidal crystals

机译:积极雕刻胶体晶体

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The development of colloidal particles that can become self-propelled when exposed to a source of light of a given frequency represents one of the most exciting new developments in the field of active matter. In this paper, we perform numerical simulations to explore several properties of crystalline colloidal aggregates in the presence of such external light fields. We show how permanent gaps of tunable size can be carved into these crystals as a result of a solid-gas transition that occurs above a threshold light intensity. We compare this phenomenon to that occurring in a parent system obtained by replacing self-propulsion with an effective temperature and discuss the main differences between the two setups. Finally, we show how moving the light field across a solid-fluid boundary allows us to transfer or transport the fluid component into or across the solid one. We discuss the dynamics of this process and set limits associated with its performance. Published under license by AIP Publishing.
机译:在给定频率的光源暴露于给定频率的光源时,胶体颗粒的发展代表了主动物质领域中最激动人心的新发展之一。在本文中,我们执行数值模拟,以探讨在这种外部光场的存在下结晶胶体聚集体的几种性质。我们表明,由于在阈值光强度之上发生的固体气体转变,我们如何将可调谐尺寸的永久性差距雕刻成这些晶体。我们将这种现象与在通过用有效温度的自推进来获得的母体系统中进行比较,并讨论两种设置之间的主要差异。最后,我们展示了如何在固体流体边界上移动光场允许我们将流体部件转移或传送到固体中。我们讨论此过程的动态并设定与其性能相关的限制。通过AIP发布在许可证下发布。

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