Walking Ferroelectric Liquid Droplets with Light

Author:

Marni Stefano1,Nava Giovanni2,Barboza Raouf1,Bellini Tommaso Giovanni2,Lucchetti Liana1ORCID

Affiliation:

1. Dipartimento SIMAU Università Politecnica delle Marche via Brecce Bianche Ancona 60131 Italy

2. Medical Biotechnology and Translational Medicine Dept. University of Milano Segrate 20054 Italy

Abstract

AbstractThe motion of ferroelectric liquid sessile droplets deposited on a ferroelectric lithium niobate substrate can be controlled by a light beam of moderate intensity irradiating the substrate at a distance of several droplet diameters from the droplet itself. The ferroelectric liquid is a nematic liquid crystal, in which almost complete polar ordering of the molecular dipoles generates an internal macroscopic polarization locally collinear to the mean molecular long axis. Upon entering the ferroelectric phase, droplets are either attracted toward the center of the beam or repelled, depending on the side of the lithium niobate exposed to light irradiation. Moreover, moving the beam results in walking the ferroelectric droplet over long distances on the substrate. This behavior is understood as due to the coupling between the polarization of the ferroelectric droplet and the polarization photoinduced in the irradiated region of the lithium niobate substrate. Indeed, the effect is not observed in the conventional nematic phase, suggesting the crucial role of the ferroelectric liquid crystal polarization.

Publisher

Wiley

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

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