Publication: Dynamics of hard colloidal cuboids in nematic liquid crystals
Loading...
Identifiers
Publication date
Reading date
Event date
Start date of the public exhibition period
End date of the public exhibition period
Authors
Patti, Alessandro
Advisors
Authors of photography
Person who provides the photography
Journal Title
Journal ISSN
Volume Title
Publisher
American Physical Society
Abstract
We perform dynamic Monte Carlo simulations to investigate the equilibrium dynamics of hard board-like colloidal particles in oblate and prolate nematic liquid crystals. In particular, we characterize the particles' diffusion along the nematic director and perpendicularly to it, and observe a structural relaxation decay that strongly depends on the particle anisotropy. To assess the Gaussianity of their dynamics and eventual occurrence of collective motion, we calculate two- and four-point correlation functions that incorporate the instantaneous values of the diffusion coefficients parallel and perpendicular to the nematic director. Our simulation results highlight the occurrence of Fickian and Gaussian dynamics at short and long times, locate the minimum diffusivity at the self-dual shape, the particle geometry that would preferentially stabilise biaxial nematics, and exclude the existence of dynamically correlated particles.
Doctoral program
Related publication
Research projects
Description
Ministerio de Ciencia,Innovación y Universidades and FEDER for funding (ProjectNo. PGC2018-097151-B-I00)
EPSRC under Grant Agreement No. EP/N02690X/1
LeverhulmeTrustResearchProjectGrantNo. RPG-2018-415
Keywords
Bibliographic reference
Phys. Rev. E 101, 052702 (2020)






