English

Monotonicity, global symplectification and the stability of Dry Ten Martini Problem

Dynamical Systems 2026-04-09 v2 Mathematical Physics math.MP Spectral Theory

Abstract

For any fixed irrational frequency and trigonometric-polynomial potential, we show that every type I energy with positive Lyapunov exponent that satisfies the gap-labelling condition is a boundary of an open spectral gap. As a corollary, for the almost-Mathieu operator in the supercritical regime the "all spectral gaps are open" property is robust under a small trigonometric-polynomial perturbation at any irrational frequency. The proof introduces a geometric, all-frequency approach built from three ingredients: (i) the projective action on the Lagrangian Grassmannian and an associated fibred rotation number, (ii) monotonicity of one-parameter families of (Hermitian) symplectic cocycles, and (iii) a partially hyperbolic splitting with a two-dimensional center together with a global symplectification (holonomy-driven parallel transport). This provides a partial resolution to the stability of the Dry Ten Martini Problem in the supercritical regime, and answers a question by M. Shamis regarding the survival of periodic gaps.

Keywords

Cite

@article{arxiv.2601.02222,
  title  = {Monotonicity, global symplectification and the stability of Dry Ten Martini Problem},
  author = {Xianzhe Li and Disheng Xu and Qi Zhou},
  journal= {arXiv preprint arXiv:2601.02222},
  year   = {2026}
}

Comments

63 pages, 2 figures; refined section 7 for futher use. Comments are welcome