On the basis of soft matter physics and modern optics, we have been interested in understanding and artificially building topology-mediated structures in soft matter systems, especially in some emerging polar or ferroelectric liquid crystal states now, colloids and polymers. This can lead to emergent phase behaviors and unique electrooptic properties that are distinct to the traditional ones. Our goal is, through the fundamental researches of experimental physics and simulations, to designing and integrating fluidic soft-matter-based materials into flexible electrooptic devices for smart electric devices and optical manipulation.
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