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Control of liquid crystals combining surface acoustic waves, nematic flows, and microfluidic confinement

Authors :
Vasquez-Montoya, Gustavo A.
Emeršič, Tadej
Atzin, Noe
Tavera-Vázquez, Antonio
Mozaffari, Ali
Zhang, Rui
Guzman, Orlando
Snezhko, Alexey
Nealey, Paul F.
De Pablo, Juan J.
Vasquez-Montoya, Gustavo A.
Emeršič, Tadej
Atzin, Noe
Tavera-Vázquez, Antonio
Mozaffari, Ali
Zhang, Rui
Guzman, Orlando
Snezhko, Alexey
Nealey, Paul F.
De Pablo, Juan J.
Publication Year :
2023

Abstract

The optical properties of liquid crystals serve as the basis for display, diagnostic, and sensing technologies. Such properties are generally controlled by relying on electric fields. In this work, we investigate the effects of microfluidic flows and acoustic fields on the molecular orientation and the corresponding optical response of nematic liquid crystals. Several previously unknown structures are identified, which are rationalized in terms of a state diagram as a function of the strengths of the flow and the acoustic field. The new structures are interpreted by relying on calculations with a free energy functional expressed in terms of the tensorial order parameter, using continuum theory simulations in the Landau-de Gennes framework. Taken together, the findings presented here offer promise for the development of new systems based on combinations of sound, flow, and confinement. The combination of flow and acoustic field applied to liquid crystals in confinement induces the formation of new structures.

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1422562949
Document Type :
Electronic Resource