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Memory formation and evolution of the vortex configuration associated with random organization

机译:与随机组织相关的涡旋构型的记忆形成和进化

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We study the general phenomenon of random organization using a vortex system. When a periodic shear with a small shear amplitude d inp is applied to many-particle (vortex) assemblies with a random distribution, the particles (vortices) gradually self-organize to avoid future collisions and transform into an organized configuration. This is detected from the time-evolution of the voltage (average velocity) that increases towards a steady-state value. From the subsequent readout measurements of using various shear amplitudes, we find that the information of the input shear amplitude d inp is memorized in the configuration of the vortex distributions in the transient as well as the steady state, and that it is readable. We also find that the transient vortex configuration formed during random organization is not microscopically homogeneous but consists of disordered and organized regions.
机译:我们研究了使用涡旋系统的随机组织的一般现象。当将具有小剪切振幅d inp的周期性剪切应用于具有随机分布的多粒子(涡旋)组件时,粒子(涡旋)会逐渐自组织以避免将来发生碰撞并转变为有组织的构型。这是从电压(平均速度)随时间的变化而变化的,该时间向稳态值增加。从使用各种剪切振幅的后续读数测量中,我们发现输入剪切振幅d inp的信息存储在瞬态和稳态的涡旋分布配置中,并且可读。我们还发现,在随机组织过程中形成的瞬态涡旋构型在微观上不是均匀的,而是由无序和有组织的区域组成。

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