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Highly cooperative stress relaxation in two-dimensional soft colloidal crystals

机译:二维软胶体晶体中的高协同应力松弛

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摘要

Stress relaxation in crystalline solids is mediated by the formation and diffusion of defects. Although it is well established how externally generated stresses relax, through the proliferation and motion of dislocations in the lattice, it remains relatively unknown how crystals cope with internal stresses. We investigate, both experimentally and in simulations, how highly localized stresses relax in 2D soft colloidal crystals. When a single particle is actively excited, by means of optical tweezing, a rich variety of highly collective stress relaxation mechanisms results. These relaxation processes manifest in the form of open strings of cooperatively moving particles through the motion of dissociated vacancy-interstitial pairs, and closed loops of mobile particles, which either result from cooperative rotations in transiently generated circular grain boundaries or through the closure of an open string by annihilation of a vacancy-interstitial pair. Surprisingly, we find that the same collective events occur in crystals that are excited by thermal fluctuations alone; a large thermal agitation inside the crystal lattice can trigger the irreversible displacements of hundreds of particles. Our results illustrate how local stresses can induce large-scale cooperative dynamics in 2D soft colloidal crystals and shed light on the stabilization mechanisms in ultrasoft crystals.
机译:结晶固体中的应力松弛是由缺陷的形成和扩散所介导的。尽管已经很好地确定了外部产生的应力如何通过晶格中位错的扩散和运动而松弛,但是,晶体如何应付内部应力仍然是一个未知数。我们在实验和仿真中都研究了二维软胶态晶体中高度局部应力的松弛情况。当单个粒子被主动激发时,通过光镊作用,会产生各种各样的高度集中的应力松弛机制。这些弛豫过程表现为通过解离的空位-间隙对的运动而协同运动的颗粒的开弦形式,以及运动颗粒的闭合环的形式,这要么是由于瞬时生成的圆形晶粒边界的协同旋转引起,要么是由于闭合了开放通过空缺-插页对的灭来生成字符串。出乎意料的是,我们发现相同的集体事件发生在仅受热波动激发的晶体中。晶格内部的大量热搅拌会触发数百个粒子的不可逆位移。我们的结果说明了局部应力如何在2D软胶体晶体中引发大规模的协同动力学,并阐明了超软晶体的稳定机制。

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