arXiv · 1002.0622
Annealing a Magnetic Cactus into Phyllotaxis
Abstract
The appearance of mathematical regularities in the disposition of leaves on a stem, scales on a pine-cone and spines on a cactus has puzzled scholars for millennia; similar so-called phyllotactic patterns are seen in self-organized growth, polypeptides, convection, magnetic flux lattices and ion beams. Levitov showed that a cylindrical lattice of repulsive particles can reproduce phyllotaxis under the (unproved) assumption that minimum of energy would be achieved by 2-D Bravais lattices. Here we provide experimental and numerical evidence that the Phyllotactic lattice is actually a ground state. When mechanically annealed, our experimental "magnetic cactus" precisely reproduces botanical phyllotaxis, along with domain boundaries (called transitions in Botany) between different phyllotactic patterns. We employ a structural genetic algorithm to explore the more general axially unconstrained case, which reveals multijugate (multiple spirals) as well as monojugate (single spiral) phyllotaxis.
Explore related subjects
Keep this discovery
Cristiano Nisoli, Nathaniel M. Gabor, Paul E. Lammert, J. D. Maynard, Vincent H. Crespi. 2010-02-03. Annealing a Magnetic Cactus into Phyllotaxis. https://doi.org/10.1103/physreve.81.046107
Cite the original work for its findings. Save a collection to share your selection of sources.