Nested nodal loops for sums of Laplace eigenfunctions
Abstract
We study nested loops in zero sets of sums of Laplace eigenfunctions on closed surfaces. In the real-analytic category, answering a question of Logunov, we prove a uniform bound for the number of rooted double nests in terms of the surface, the root, and the spectral cutoff. We show that this analyticity hypothesis is sharp: on a smooth sphere, a linear combination of eigenfunctions with eigenvalues and can have infinitely many rooted double nests. We also answer a question of Logunov and Nadirashvili by constructing a planar biharmonic function whose nodal set contains a double nest, and we prove a quantitative bound for entire biharmonic functions of polynomial growth. The biharmonic construction gives a nodal-set manifestation of the failure of the Boggio--Hadamard conjecture from the 1900s.
Cite
@article{arxiv.2605.18705,
title = {Nested nodal loops for sums of Laplace eigenfunctions},
author = {Robert Koirala},
journal= {arXiv preprint arXiv:2605.18705},
year = {2026}
}
Comments
9 pages, 2 figures, comments welcome