Evolution of a colloidal critical state in an optical pinning potential landscape

被引:98
作者
Korda, PT
Spalding, GC
Grier, DG
机构
[1] Univ Chicago, James Franck Inst, Dept Phys, Chicago, IL 60637 USA
[2] Univ Chicago, Inst Biophys Dynam, Chicago, IL 60637 USA
[3] Illinois Wesleyan Univ, Dept Phys, Bloomington, IL 61702 USA
关键词
D O I
10.1103/PhysRevB.66.024504
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
As a step toward isolating the influence of a modulated substrate potential on dynamics and phase transitions in two dimensions, we have studied the behavior of a monolayer of colloidal spheres driven by hydrodynamic forces into a large array of holographic optical tweezers. These optical traps constitute a substrate potential whose symmetry, separation, and depth of modulation can be varied independently. We describe a particular set of experiments, in which a colloidal monolayer invades the optical pinning potential much as magnetic flux lines invade type II superconductors, including cooperative avalanches, streaming motion, and a symmetry-altering depinning transition. The jammed intermediate state in this process resembles the critical state long associated with flux entering zero-field-cooled superconductors. By tracking the particles' motions, we are able to determine the microscopic processes responsible for the evolution of the colloidal critical state and compare these with recent simulations of flux-line dynamics.
引用
收藏
页码:245041 / 245047
页数:7
相关论文
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