Calculus of Variations and Partial Differential Equations· 2026Q1
Slow-moving pattern interfaces in general directions for a two-dimensional Swift–Hohenberg-type equation
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- Q1SCImago
- 2026year
Short summary
Rigorous proof of slow-moving pattern interfaces in a 2D Swift-Hohenberg model, showing how stripe and hexagonal patterns invade homogeneous states.
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Abstract
Abstract We rigorously prove the bifurcation of slow-moving pattern interfaces with general direction in a two-dimensional Swift–Hohenberg-type model close to a Turing instability for a large class of nonlinearities. These interfaces describe the invasion of stripe and hexagonal patterns into the spatially homogeneous state and model a possible mechanism for pattern formation, as observed in a wide range of real-world applications. For this, we develop a rigorous framework to establish the existence of such solutions using spatial dynamics and non-standard centre manifold theory. Our approach exploits geometric and algebraic structures generic to $$\textrm{O}(2)$$ O ( 2 ) -symmetric pattern-forming systems near a Turing instability, and addresses fundamental technical challenges due to a non-uniform spectral gap around the imaginary axis, quadratic resonances induced by the hexagonal structure, and the high-dimensional phase space of the reduced equations.
The authors' abstract, as published at the source. Calculus of Variations and Partial Differential Equations, 2026 · DOI ↗
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