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- W2746245810 endingPage "101003" @default.
- W2746245810 startingPage "101003" @default.
- W2746245810 abstract "Among typical active matter such as self-propelled micro-objects, the characteristic collective motion originating from the hydrodynamic interaction between constituents has been observed in both biological and artificial systems. In illustrating such motion of micrometer-size particles in a one-dimensional optically driven system with a low Reynolds number, we highlight the importance of the hydrodynamic interaction. We show the appearance of regular stationary and dynamic arrangements resembling “crystals” or “clusters” observed in the equilibrium state. A transition in the collective motion has been observed by varying the hydrodynamic interaction in a system of two particle sizes and in a spatially confined system. An optical manipulation technique and the related hydrodynamic equations are also discussed. These are useful tools for elucidating the complex collective behavior of the hydrodynamically coupled micro-objects." @default.
- W2746245810 created "2017-08-31" @default.
- W2746245810 creator A5036844513 @default.
- W2746245810 date "2017-10-15" @default.
- W2746245810 modified "2023-09-27" @default.
- W2746245810 title "Hydrodynamically Induced Collective Motion of Optically Driven Colloidal Particles on a Circular Path" @default.
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- W2746245810 doi "https://doi.org/10.7566/jpsj.86.101003" @default.
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