Reconfigurable knots and links in chiral nematic colloids
arXiv:1107.1619 · doi:10.1126/science.1205705
Abstract
Tying knots and linking microscopic loops of polymers, macromolecules, or defect lines in complex materials is a challenging task for material scientists. We demonstrate the knotting of microscopic topological defect lines in chiral nematic liquid crystal colloids into knots and links of arbitrary complexity by using laser tweezers as a micromanipulation tool. All knots and links with up to six crossings, including the Hopf link, the Star of David and the Borromean rings are demonstrated, stabilizing colloidal particles into an unusual soft matter. The knots in chiral nematic colloids are classified by the quantized self-linking number, a direct measure of the geometric, or Berry's, phase. Forming arbitrary microscopic knots and links in chiral nematic colloids is a demonstration of how relevant the topology can be for the material engineering of soft matter.
6 pages, 3 figures
References in corpus (1)
Cited by in corpus (19)
- Topology and Dynamics of Active Nematic Vesicles
- Topological colloids
- Skyrmion knots in frustrated magnets
- Helicity conservation by flow across scales in reconnecting vortex links and knots
- Reconfigurable interactions and three-dimensional patterning of colloidal particles and defects in lamellar soft media
- Weaving knotted vector fields with tunable helicity
- Active shape-morphing elastomeric colloids in short-pitch cholesteric liquid crystals
- Shape-controlled orientation and assembly of colloids with sharp edges in nematic liquid crystals
- Vortex knots in tangled quantum eigenfunctions
- Magnetically responsive gourd-shaped colloidal particles in cholesteric liquid crystals
- Edge pinning and transformation of defect lines induced by faceted colloidal rings in nematic liquid crystals
- Controlling placement of nonspherical (boomerang) colloids in nematic cells with photopatterned director
- When do knots in light stay knotted?
- Colloidal spirals in nematic liquid crystals
- Filamentous phages as building blocks for reconfigurable and hierarchical self-assembly
- Knotted globular ring polymers: how topology affects statistics and thermodynamics
- Field-controlled columnar and planar patterning of cholesteric colloids
- Quantum knots in Bose-Einstein condensates created by counterdiabatic control
- Bistable director alignments of nematic liquid crystals confined in frustrated substrates