旋转对称性
对称性破坏
自发对称破缺
齐次空间
极化(电化学)
非线性系统
经典力学
曲率
物理
偏微分方程
测地线
数学
数学分析
几何学
量子力学
物理化学
化学
作者
Pearson W. Miller,Daniel Fortunato,Cyrill B. Muratov,Leslie Greengard,Stanislav Y. Shvartsman
标识
DOI:10.1038/s43588-022-00295-0
摘要
How does breaking the symmetry of an equation alter the symmetry of its solutions? Here, we systematically examine how reducing underlying symmetries from spherical to axisymmetric influences the dynamics of an archetypal model of cell polarization, a key process of biological spatial self-organization. Cell polarization is characterized by nonlinear and non-local dynamics, but we overcome the theory challenges these traits pose by introducing a broadly applicable numerical scheme allowing us to efficiently study continuum models in a wide range of geometries. Guided by numerical results, we discover a dynamical hierarchy of timescales that allows us to reduce relaxation to a purely geometric problem of area-preserving geodesic curvature flow. Through application of variational results, we analytically construct steady states on a number of biologically relevant shapes. In doing so, we reveal non-trivial solutions for symmetry breaking.
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